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1.
J Cell Biol ; 222(2)2023 02 06.
Artigo em Inglês | MEDLINE | ID: mdl-36571786

RESUMO

Invadopodia formation is regulated by Rho GTPases. However, the molecular mechanisms that control Rho GTPase signaling at invadopodia remain poorly understood. Here, we have identified ARHGAP17, a Cdc42-specific RhoGAP, as a key regulator of invadopodia in breast cancer cells and characterized a novel ARHGAP17-mediated signaling pathway that controls the spatiotemporal activity of Cdc42 during invadopodia turnover. Our results show that during invadopodia assembly, ARHGAP17 localizes to the invadopodia ring and restricts the activity of Cdc42 to the invadopodia core, where it promotes invadopodia growth. Invadopodia disassembly starts when ARHGAP17 translocates from the invadopodia ring to the core, in a process that is mediated by its interaction with the Cdc42 effector CIP4. Once at the core, ARHGAP17 inactivates Cdc42 to promote invadopodia disassembly. Our results in invadopodia provide new insights into the coordinated transition between the activation and inactivation of Rho GTPases.


Assuntos
Neoplasias da Mama , Proteínas Ativadoras de GTPase , Podossomos , Proteína cdc42 de Ligação ao GTP , Proteína cdc42 de Ligação ao GTP/genética , Proteína cdc42 de Ligação ao GTP/metabolismo , Podossomos/metabolismo , Proteínas rho de Ligação ao GTP/genética , Proteínas rho de Ligação ao GTP/metabolismo , Transdução de Sinais , Linhagem Celular Tumoral , Humanos , Proteínas Ativadoras de GTPase/metabolismo
2.
STAR Protoc ; 3(2): 101437, 2022 06 17.
Artigo em Inglês | MEDLINE | ID: mdl-35677607

RESUMO

Ruffles are actin-rich membrane protrusions implicated in actin reorganization and initiation of cell motility. Here, we describe methods for measuring and analyzing ruffle dynamics in live cells and average ruffle area per cell in fixed samples. The specific steps described are for the analysis of A549 lung adenocarcinoma cells, but the protocol can be applied to other cell types. The protocol has applications for dissecting the signaling events linked to ruffling. For complete details on the use and execution of this protocol, please refer to Cooke et al. (2021).


Assuntos
Actinas , Adenocarcinoma de Pulmão , Actinas/metabolismo , Adenocarcinoma de Pulmão/metabolismo , Estruturas da Membrana Celular/metabolismo , Movimento Celular , Humanos
3.
Cell Rep ; 37(5): 109905, 2021 11 02.
Artigo em Inglês | MEDLINE | ID: mdl-34731623

RESUMO

Despite the undisputable role of the small GTPase Rac1 in the regulation of actin cytoskeleton reorganization, the Rac guanine-nucleotide exchange factors (Rac-GEFs) involved in Rac1-mediated motility and invasion in human lung adenocarcinoma cells remain largely unknown. Here, we identify FARP1, ARHGEF39, and TIAM2 as essential Rac-GEFs responsible for Rac1-mediated lung cancer cell migration upon EGFR and c-Met activation. Noteworthily, these Rac-GEFs operate in a non-redundant manner by controlling distinctive aspects of ruffle dynamics formation. Mechanistic analysis reveals a leading role of the AXL-Gab1-PI3K axis in conferring pro-motility traits downstream of EGFR. Along with the positive association between the overexpression of Rac-GEFs and poor lung adenocarcinoma patient survival, we show that FARP1 and ARHGEF39 are upregulated in EpCam+ cells sorted from primary human lung adenocarcinomas. Overall, our study reveals fundamental insights into the complex intricacies underlying Rac-GEF-mediated cancer cell motility signaling, hence underscoring promising targets for metastatic lung cancer therapy.


Assuntos
Adenocarcinoma de Pulmão/enzimologia , Fatores de Troca do Nucleotídeo Guanina/metabolismo , Neoplasias Pulmonares/enzimologia , Receptores Proteína Tirosina Quinases/metabolismo , Fatores de Troca de Nucleotídeo Guanina Rho/metabolismo , Proteínas rac1 de Ligação ao GTP/metabolismo , Células A549 , Adenocarcinoma de Pulmão/genética , Adenocarcinoma de Pulmão/patologia , Idoso , Movimento Celular , Molécula de Adesão da Célula Epitelial/metabolismo , Receptores ErbB/genética , Receptores ErbB/metabolismo , Feminino , Regulação Neoplásica da Expressão Gênica , Fatores de Troca do Nucleotídeo Guanina/genética , Humanos , Neoplasias Pulmonares/genética , Neoplasias Pulmonares/patologia , Masculino , Pessoa de Meia-Idade , Invasividade Neoplásica , Proteínas Proto-Oncogênicas/genética , Proteínas Proto-Oncogênicas/metabolismo , Proteínas Proto-Oncogênicas c-met/genética , Proteínas Proto-Oncogênicas c-met/metabolismo , Receptores Proteína Tirosina Quinases/genética , Fatores de Troca de Nucleotídeo Guanina Rho/genética , Transdução de Sinais , Proteínas rac1 de Ligação ao GTP/genética , Receptor Tirosina Quinase Axl
4.
J Cell Biol ; 218(8): 2699-2725, 2019 08 05.
Artigo em Inglês | MEDLINE | ID: mdl-31248911

RESUMO

The canonical Scribble polarity complex is implicated in regulation of epithelial junctions and apical polarity. Here, we show that SGEF, a RhoG-specific GEF, forms a ternary complex with Scribble and Dlg1, two members of the Scribble complex. SGEF targets to apical junctions in a Scribble-dependent fashion and functions in the regulation of actomyosin-based contractility and barrier function at tight junctions as well as E-cadherin-mediated formation of adherens junctions. Surprisingly, SGEF does not control the establishment of polarity. However, in 3D cysts, SGEF regulates the formation of a single open lumen. Interestingly, SGEF's nucleotide exchange activity regulates the formation and maintenance of adherens junctions, and in cysts the number of lumens formed, whereas SGEF's scaffolding activity is critical for regulation of actomyosin contractility and lumen opening. We propose that SGEF plays a key role in coordinating junctional assembly and actomyosin contractility by bringing together Scribble and Dlg1 and targeting RhoG activation to cell-cell junctions.


Assuntos
Proteína 1 Homóloga a Discs-Large/metabolismo , Células Epiteliais/metabolismo , Fatores de Troca do Nucleotídeo Guanina/metabolismo , Junções Intercelulares/metabolismo , Peptídeos e Proteínas de Sinalização Intracelular/metabolismo , Actomiosina/metabolismo , Junções Aderentes/metabolismo , Animais , Caderinas/metabolismo , Polaridade Celular , Proteína 1 Homóloga a Discs-Large/química , Cães , Embrião não Mamífero/metabolismo , Fatores de Troca do Nucleotídeo Guanina/química , Células HEK293 , Humanos , Células Madin Darby de Rim Canino , Ligação Proteica , Domínios Proteicos , Junções Íntimas/metabolismo , Xenopus laevis
5.
Sci Rep ; 9(1): 5163, 2019 03 26.
Artigo em Inglês | MEDLINE | ID: mdl-30914742

RESUMO

Focal adhesions (FA) are a complex network of proteins that allow the cell to form physical contacts with the extracellular matrix (ECM). FA assemble and disassemble in a dynamic process, orchestrated by a variety of cellular components. However, the underlying mechanisms that regulate adhesion turnover remain poorly understood. Here we show that RhoG, a Rho GTPase related to Rac, modulates FA dynamics. When RhoG expression is silenced, FA are more stable and live longer, resulting in an increase in the number and size of adhesions, which are also more mature and fibrillar-like. Silencing RhoG also increases the number and thickness of stress fibers, which are sensitive to blebbistatin, suggesting contractility is increased. The molecular mechanism by which RhoG regulates adhesion turnover is yet to be characterized, but our results demonstrate that RhoG plays a role in the regulation of microtubule-mediated FA disassembly.


Assuntos
Adesões Focais/metabolismo , Microtúbulos/metabolismo , Proteínas rho de Ligação ao GTP/metabolismo , Actomiosina/metabolismo , Linhagem Celular Tumoral , Forma Celular , Técnicas de Silenciamento de Genes , Inativação Gênica , Humanos , Pseudópodes/metabolismo , Fibras de Estresse/metabolismo
6.
Mol Biol Cell ; 28(13): 1768-1781, 2017 Jul 01.
Artigo em Inglês | MEDLINE | ID: mdl-28468978

RESUMO

Circular dorsal ruffles (CDRs) are actin-rich structures that form on the dorsal surface of many mammalian cells in response to growth factor stimulation. CDRs represent a unique type of structure that forms transiently and only once upon stimulation. The formation of CDRs involves a drastic rearrangement of the cytoskeleton, which is regulated by the Rho family of GTPases. So far, only Rac1 has been consistently associated with CDR formation, whereas the role of other GTPases in this process is either lacking or inconclusive. Here we show that RhoG and its exchange factor, Trio, play a role in the regulation of CDR dynamics, particularly by modulating their size. RhoG is activated by Trio downstream of PDGF in a PI3K- and Src-dependent manner. Silencing RhoG expression decreases the number of cells that form CDRs, as well as the area of the CDRs. The regulation of CDR area by RhoG is independent of Rac1 function. In addition, our results show the RhoG plays a role in the cellular functions associated with CDR formation, including macropinocytosis, receptor internalization, and cell migration. Taken together, our results reveal a novel role for RhoG in the regulation of CDRs and the cellular processes associated with their formation.


Assuntos
Fatores de Troca do Nucleotídeo Guanina/metabolismo , Proteínas Serina-Treonina Quinases/metabolismo , Proteínas rho de Ligação ao GTP/metabolismo , Actinas/metabolismo , Animais , Linhagem Celular , Estruturas da Membrana Celular/metabolismo , Estruturas da Membrana Celular/fisiologia , Movimento Celular/fisiologia , Citoesqueleto/metabolismo , Humanos , Microtúbulos/metabolismo , Fosfatidilinositol 3-Quinases/metabolismo , Pinocitose/fisiologia , Ratos , Proteínas rac1 de Ligação ao GTP/metabolismo
7.
J Cell Sci ; 130(6): 1064-1077, 2017 03 15.
Artigo em Inglês | MEDLINE | ID: mdl-28202690

RESUMO

One of the hallmarks of cancer is the ability of tumor cells to invade surrounding tissues and metastasize. During metastasis, cancer cells degrade the extracellular matrix, which acts as a physical barrier, by developing specialized actin-rich membrane protrusion structures called invadopodia. The formation of invadopodia is regulated by Rho GTPases, a family of proteins that regulates the actin cytoskeleton. Here, we describe a novel role for RhoG in the regulation of invadopodia disassembly in human breast cancer cells. Our results show that RhoG and Rac1 have independent and opposite roles in the regulation of invadopodia dynamics. We also show that SGEF (also known as ARHGEF26) is the exchange factor responsible for the activation of RhoG during invadopodia disassembly. When the expression of either RhoG or SGEF is silenced, invadopodia are more stable and have a longer lifetime than in control cells. Our findings also demonstrate that RhoG and SGEF modulate the phosphorylation of paxillin, which plays a key role during invadopodia disassembly. In summary, we have identified a novel signaling pathway involving SGEF, RhoG and paxillin phosphorylation, which functions in the regulation of invadopodia disassembly in breast cancer cells.


Assuntos
Neoplasias da Mama/metabolismo , Neoplasias da Mama/patologia , Podossomos/metabolismo , Transdução de Sinais , Proteínas rho de Ligação ao GTP/metabolismo , Linhagem Celular Tumoral , Feminino , Técnicas de Silenciamento de Genes , Inativação Gênica , Fatores de Troca do Nucleotídeo Guanina/metabolismo , Humanos , Modelos Biológicos , Invasividade Neoplásica , Fosforilação , Proteínas rac1 de Ligação ao GTP/metabolismo , Quinases da Família src/metabolismo
8.
Biochem Biophys Res Commun ; 484(2): 255-261, 2017 03 04.
Artigo em Inglês | MEDLINE | ID: mdl-28115158

RESUMO

Morphological plasticity in response to environmental cues in migrating cancer cells requires F-actin cytoskeletal rearrangements. Conserved formin family proteins play critical roles in cell shape, tumor cell motility, invasion and metastasis, in part, through assembly of non-branched actin filaments. Diaphanous-related formin-2 (mDia2/Diaph3/Drf3/Dia) regulates mesenchymal-to-amoeboid morphological conversions and non-apoptotic blebbing in tumor cells by interacting with its inhibitor diaphanous-interacting protein (DIP), and disrupting cortical F-actin assembly and bundling. F-actin disruption is initiated by a CXCL12-dependent mechanism. Downstream CXCL12 signaling partners inducing mDia2-dependent amoeboid conversions remain enigmatic. We found in MDA-MB-231 tumor cells CXCL12 induces DIP and mDia2 interaction in blebs, and engages its receptor CXCR4 to induce RhoA-dependent blebbing. mDia2 and CXCR4 associate in blebs upon CXCL12 stimulation. Both CXCR4 and RhoA are required for CXCL12-induced blebbing. Neither CXCR7 nor other Rho GTPases that activate mDia2 are required for CXCL12-induced blebbing. The Rho Guanine Nucleotide Exchange Factor (GEF) Net1 is required for CXCL12-driven RhoA activation and subsequent blebbing. These results reveal CXCL12 signaling, through CXCR4, directs a Net1/RhoA/mDia-dependent signaling hub to drive cytoskeleton rearrangements to regulate morphological plasticity in tumor cells. These signaling hubs may be conserved during normal and cancer cells responding to chemotactic cues.


Assuntos
Proteínas de Transporte/metabolismo , Quimiocina CXCL12/metabolismo , Neoplasias/metabolismo , Receptores CXCR4/metabolismo , Transdução de Sinais , Linhagem Celular Tumoral , Forminas , Células HEK293 , Humanos , Neoplasias/patologia
9.
Sci Rep ; 6: 28805, 2016 06 29.
Artigo em Inglês | MEDLINE | ID: mdl-27353427

RESUMO

Cells organize actin filaments into higher-order structures by regulating the composition, distribution and concentration of actin crosslinkers. Palladin is an actin crosslinker found in the lamellar actin network and stress fibers, which are critical for mechanosensing of the environment. Palladin also serves as a molecular scaffold for α-actinin, another key actin crosslinker. By virtue of its close interactions with actomyosin structures in the cell, palladin may play an important role in cell mechanics. However, the role of palladin in cellular force generation and mechanosensing has not been studied. Here, we investigate the role of palladin in regulating the plasticity of the actin cytoskeleton and cellular force generation in response to alterations in substrate stiffness. Traction force microscopy revealed that tumor-associated fibroblasts generate larger forces on substrates of increased stiffness. Contrary to expectations, knocking down palladin increased the forces generated by cells and inhibited their ability to sense substrate stiffness for very stiff gels. This was accompanied by significant differences in actin organization, adhesion dynamics and altered myosin organization in palladin knock-down cells. Our results suggest that actin crosslinkers such as palladin and myosin motors coordinate for optimal cell function and to prevent aberrant behavior as in cancer metastasis.


Assuntos
Fibroblastos Associados a Câncer/fisiologia , Proteínas do Citoesqueleto/fisiologia , Fosfoproteínas/fisiologia , Actinas/metabolismo , Fibroblastos Associados a Câncer/efeitos dos fármacos , Adesão Celular , Células Cultivadas , Adesões Focais/metabolismo , Compostos Heterocíclicos de 4 ou mais Anéis/farmacologia , Humanos , Mecanotransdução Celular
10.
Cytoskeleton (Hoboken) ; 72(8): 402-11, 2015 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-26333695

RESUMO

The stroma surrounding solid tumors contributes in complex ways to tumor progression. Cancer-associated fibroblasts (CAFs) are the predominant cell type in the tumor stroma. Previous studies have shown that the actin-binding protein palladin is highly expressed in the stroma of pancreas tumors, but the interpretation of these results is complicated by the fact that palladin exists as multiple isoforms. In the current study, the expression and localization of palladin isoform 4 was examined in normal specimens and adenocarcinomas of human pancreas, lung, colon, and stomach samples. Immunohistochemistry with isoform-selective antibodies revealed that expression of palladin isoform 4 was higher in adenocarcinomas versus normal tissues, and highest in CAFs. Immunohistochemistry staining revealed that palladin was present in both the cytoplasm and the nucleus of CAFs, and this was confirmed using immunofluorescence staining and subcellular fractionation of a pancreatic CAF cell line. To investigate the functional significance of nuclear palladin, RNA Seq analysis of palladin knockdown CAFs versus control CAFs was performed, and the results showed that palladin regulates the expression of genes involved in the biosynthesis and assembly of collagen, and organization of the extracellular matrix. These results suggested that palladin isoform 4 may play a conserved role in establishing the phenotype of CAFs in multiple tumor types.


Assuntos
Adenocarcinoma/metabolismo , Proteínas do Citoesqueleto/metabolismo , Regulação Neoplásica da Expressão Gênica , Neoplasias Pancreáticas/metabolismo , Fosfoproteínas/metabolismo , Microambiente Tumoral , Proteínas do Citoesqueleto/química , Proteínas do Citoesqueleto/genética , Humanos , Imuno-Histoquímica , Fosfoproteínas/química , Fosfoproteínas/genética , Isoformas de Proteínas/metabolismo , Células Tumorais Cultivadas
11.
Cell Adh Migr ; 8(6): 535-49, 2014.
Artigo em Inglês | MEDLINE | ID: mdl-25482524

RESUMO

Cell migration is a highly regulated multistep process that requires the coordinated regulation of cell adhesion, protrusion, and contraction. These processes require numerous protein-protein interactions and the activation of specific signaling pathways. The Rho family of GTPases plays a key role in virtually every aspect of the cell migration cycle. The activation of Rho GTPases is mediated by a large and diverse family of proteins; the guanine nucleotide exchange factors (RhoGEFs). GEFs work immediately upstream of Rho proteins to provide a direct link between Rho activation and cell-surface receptors for various cytokines, growth factors, adhesion molecules, and G protein-coupled receptors. The regulated targeting and activation of RhoGEFs is essential to coordinate the migratory process. In this review, we summarize the recent advances in our understanding of the role of RhoGEFs in the regulation of cell migration.


Assuntos
Movimento Celular/fisiologia , Fatores de Troca de Nucleotídeo Guanina Rho/metabolismo , Proteínas rho de Ligação ao GTP/metabolismo , Adesão Celular , Humanos
12.
J Mol Biol ; 425(18): 3325-37, 2013 Sep 23.
Artigo em Inglês | MEDLINE | ID: mdl-23806659

RESUMO

Here, we report the NMR structure of the actin-binding domain contained in the cell adhesion protein palladin. Previously, we demonstrated that one of the immunoglobulin domains of palladin (Ig3) is both necessary and sufficient for direct filamentous actin binding in vitro. In this study, we identify two basic patches on opposite faces of Ig3 that are critical for actin binding and cross-linking. Sedimentation equilibrium assays indicate that the Ig3 domain of palladin does not self-associate. These combined data are consistent with an actin cross-linking mechanism that involves concurrent attachment of two actin filaments by a single palladin molecule by an electrostatic mechanism. Palladin mutations that disrupt actin binding show altered cellular distributions and morphology of actin in cells, revealing a functional requirement for the interaction between palladin and actin in vivo.


Assuntos
Actinas/metabolismo , Proteínas do Citoesqueleto/química , Proteínas do Citoesqueleto/metabolismo , Proteínas do Citoesqueleto/fisiologia , Fosfoproteínas/química , Fosfoproteínas/metabolismo , Fosfoproteínas/fisiologia , Domínios e Motivos de Interação entre Proteínas , Actinas/química , Substituição de Aminoácidos/fisiologia , Animais , Células COS , Chlorocebus aethiops , Proteínas do Citoesqueleto/genética , Imunoglobulinas/química , Camundongos , Modelos Moleculares , Mutagênese Sítio-Dirigida , Fosfoproteínas/genética , Ligação Proteica/genética , Domínios e Motivos de Interação entre Proteínas/genética , Mapeamento de Interação de Proteínas , Transporte Proteico/genética , Coelhos , Transfecção
13.
Buenos Aires; Boas Novas Libros; 2013. 158 p.
Monografia em Espanhol | LILACS | ID: biblio-1052666

RESUMO

Este libro intenta aproximarse a las tensiones inherentes al cuidado de las familias que demandan servicios neonatales; a cómo los distintos miembros del equipo de salud interdisciplinario de atención dan respuesta y de las estrategias con las cuales hacer frente a las tareas. Los autores son los médicos, trabajadores sociales y psicólogos que atienden a niños recién nacidos, sanos y enfermos, y a sus familias, que cuentan sus experiencias y enfoques. Su contenido es el siguiente: Organización y gerencia de un servicio de neonatología en el conurbano bonaerense. Desarrollo de un área ambulatoria para neonatología. La interdisciplina en el trabajo social hospitalario. Intervención del equipo interdisciplinario en situaciones de maltrato y violación de derechos. La atención de los nacimientos extremadamente pequeños: problemas éticos al inicio (final) de una vida. Estás vivo o no? Algunos conceptos básicos sobre cómo situarnos frente a la mortalidad fetal. Sin documentos, sin nombre, sin rostro, sin cuerpo, sin existencia, sin..


Assuntos
Humanos , Recém-Nascido , Serviços de Saúde da Criança , Neonatologia , Berçários Hospitalares , Ambulatório Hospitalar , Equipe de Assistência ao Paciente , Serviço Social , Serviço Hospitalar de Assistência Social , Administração de Serviços de Saúde , Maus-Tratos Infantis , Serviços de Saúde Mental
14.
PLoS One ; 5(9): e12823, 2010 Sep 22.
Artigo em Inglês | MEDLINE | ID: mdl-20877641

RESUMO

Palladin, an actin associated protein, plays a significant role in regulating cell adhesion and cell motility. Palladin is important for development, as knockdown in mice is embryonic lethal, yet its role in the development of the vasculature is unknown. We have shown that palladin is essential for the expression of smooth muscle cells (SMC) marker genes and force development in response to agonist stimulation in palladin deficient SMCs. The goal of the study was to determine the molecular mechanisms underlying palladin's ability to regulate the expression of SMC marker genes. Results showed that palladin expression was rapidly induced in an A404 cell line upon retinoic acid (RA) induced differentiation. Suppression of palladin expression with siRNAs inhibited the expression of RA induced SMC differentiation genes, SM α-actin (SMA) and SM22, whereas over-expression of palladin induced SMC gene expression. Chromatin immunoprecipitation assays provided evidence that palladin bound to SMC genes, whereas co-immunoprecipitation assays also showed binding of palladin to myocardin related transcription factors (MRTFs). Endogenous palladin was imaged in the nucleus, increased with leptomycin treatment and the carboxyl-termini of palladin co-localized with MRTFs in the nucleus. Results support a model wherein palladin contributes to SMC differentiation through regulation of CArG-SRF-MRTF dependent transcription of SMC marker genes and as previously published, also through actin dynamics. Finally, in E11.5 palladin null mouse embryos, the expression of SMA and SM22 mRNA and protein is decreased in the vessel wall. Taken together, our findings suggest that palladin plays a key role in the differentiation of SMCs in the developing vasculature.


Assuntos
Actinas/metabolismo , Diferenciação Celular , Proteínas do Citoesqueleto/metabolismo , Músculo Liso Vascular/metabolismo , Miócitos de Músculo Liso/citologia , Fosfoproteínas/metabolismo , Actinas/genética , Animais , Linhagem Celular , Núcleo Celular/genética , Núcleo Celular/metabolismo , Proteínas do Citoesqueleto/genética , Regulação da Expressão Gênica , Camundongos , Camundongos Knockout , Músculo Liso Vascular/citologia , Músculo Liso Vascular/embriologia , Miócitos de Músculo Liso/metabolismo , Fosfoproteínas/genética , Ligação Proteica , Transporte Proteico , Ratos
15.
PLoS One ; 5(4): e10347, 2010 Apr 26.
Artigo em Inglês | MEDLINE | ID: mdl-20436683

RESUMO

Pancreatic ductal adenocarcinoma (PDA) is a lethal disease with a characteristic pattern of early metastasis, which is driving a search for biomarkers that can be used to detect the cancer at an early stage. Recently, the actin-associated protein palladin was identified as a candidate biomarker when it was shown that palladin is mutated in a rare inherited form of PDA, and overexpressed in many sporadic pancreas tumors and premalignant precursors. In this study, we analyzed the expression of palladin isoforms in murine and human PDA and explored palladin's potential use in diagnosing PDA. We performed immunohistochemistry and immunoblot analyses on patient samples and tumor-derived cells using an isoform-selective monoclonal antibody and a pan-palladin polyclonal antibody. Immunoblot and real-time quantitative reverse transcription-PCR were used to quantify palladin mRNA levels in human samples. We show that there are two major palladin isoforms expressed in pancreas: 65 and 85-90 kDa. The 65 kDa isoform is expressed in both normal and neoplastic ductal epithelial cells. The 85-90 kDa palladin isoform is highly overexpressed in tumor-associated fibroblasts (TAFs) in both primary and metastatic tumors compared to normal pancreas, in samples obtained from either human patients or genetically engineered mice. In tumor-derived cultured cells, expression of palladin isoforms follows cell-type specific patterns, with the 85-90 kDa isoform in TAFs, and the 65 kDa isoform predominating in normal and neoplastic epithelial cells. These results suggest that upregulation of 85-90 kDa palladin isoform may play a role in the establishment of the TAF phenotype, and thus in the formation of a desmoplastic tumor microenvironment. Thus, palladin may have a potential use in the early diagnosis of PDA and may have much broader significance in understanding metastatic behavior.


Assuntos
Carcinoma Ductal Pancreático/diagnóstico , Proteínas do Citoesqueleto/genética , Fosfoproteínas/genética , Animais , Biomarcadores Tumorais , Proteínas do Citoesqueleto/análise , Fibroblastos/patologia , Humanos , Imunoensaio , Camundongos , Mutação , Proteínas de Neoplasias , Fosfoproteínas/análise , Isoformas de Proteínas , RNA Mensageiro/análise , Reação em Cadeia da Polimerase Via Transcriptase Reversa , Regulação para Cima
16.
Cell Motil Cytoskeleton ; 66(8): 618-34, 2009 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-19466753

RESUMO

Immunoglobulin domains are found in a wide variety of functionally diverse transmembrane proteins, and also in a smaller number of cytoplasmic proteins. Members of this latter group are usually associated with the actin cytoskeleton, and most of them bind directly to either actin or myosin, or both. Recently, studies of inherited human disorders have identified disease-causing mutations in five cytoplasmic Ig-domain proteins: myosin-binding protein C, titin, myotilin, palladin, and myopalladin. Together with results obtained from cultured cells and mouse models, these clinical studies have yielded novel insights into the unexpected roles of Ig domain proteins in mechanotransduction and signaling to the nucleus. An emerging theme in this field is that cytoskeleton-associated Ig domain proteins are more than structural elements of the cell, and may have evolved to fill different needs in different cellular compartments. Cell Motil. Cytoskeleton 2009. (c) 2009 Wiley-Liss, Inc.


Assuntos
Citoplasma/metabolismo , Citoesqueleto/metabolismo , Proteínas de Transporte/metabolismo , Conectina , Proteínas do Citoesqueleto/metabolismo , Humanos , Proteínas dos Microfilamentos , Modelos Biológicos , Proteínas Musculares/metabolismo , Fosfoproteínas/metabolismo , Proteínas Quinases/metabolismo
17.
Cell Signal ; 21(2): 253-63, 2009 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-19038333

RESUMO

Protein Kinase D (PKD) has been implicated in the regulation of actin turnover at the leading edge, invasion and migration. In particular, a complex between cortactin, paxillin and PKD in the invadopodia of invasive breast cancer cells has been described earlier, but so far this complex remained ill defined. Here we have investigated the possible role of PKD as a cortactin kinase. Using a mass spectrometric approach, we found that PKD phosphorylates cortactin on Ser 298 in the 6th cortactin repeat region and on Ser 348, right before the helical-proline rich domain of cortactin. We developed phosphospecific antibodies against these phosphorylated sequences, and used them as tools to follow the in vivo phosphorylation of cortactin by PKD. Examination of cortactin phosphorylation kinetics revealed that Ser 298 serves as a priming site for subsequent phosphorylation of Ser 348. Src, a well-known cortactin kinase, strongly potentiated the in vivo PKD mediated cortactin phosphorylation. This Src effect is neither mediated by pre-phosphorylation of cortactin nor by activation of PKD by Src. Phosphorylation of cortactin by PKD does not affect its subcellular localization, nor does it affect its translocation to podosomes or membrane ruffles. Moreover, there was no effect of PKD mediated cortactin phosphorylation on EGF receptor degradation and LPA induced migration. Taken together, these data establish cortactin as a novel PKD substrate and reveal a novel connection between Src and PKD.


Assuntos
Cortactina/metabolismo , Proteína Quinase C/metabolismo , Proteínas Proto-Oncogênicas pp60(c-src)/metabolismo , Sequência de Aminoácidos , Linhagem Celular , Cortactina/imunologia , Células HeLa , Humanos , Imunoprecipitação , Espectrometria de Massas , Microscopia de Fluorescência , Fosforilação
18.
F1000 Biol Rep ; 1: 4, 2009 Jan 21.
Artigo em Inglês | MEDLINE | ID: mdl-20948645

RESUMO

The Rho-family GTPases are proving to have a variety of biological functions apart from their well known effects on the cytoskeleton. Recent work indicates their involvement in signaling between the adhesion receptors integrin and syndecan, effects on the recruitment of beta-catenin to the nucleus, and potential roles in the nucleus as well as the cytoplasm.

19.
Eur J Cell Biol ; 87(8-9): 517-25, 2008 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-18342394

RESUMO

Palladin is a widely expressed protein found in stress fibers, focal adhesions, growth cones, Z-discs, and other actin-based subcellular structures. It belongs to a small gene family that includes the Z-disc proteins myopalladin and myotilin, all of which share similar Ig-like domains. Recent advances have shown that palladin shares with myotilin the ability to bind directly to F-actin, and to crosslink actin filaments into bundles, in vitro. Studies in a variety of cultured cells suggest that the actin-organizing activity of palladin plays a central role in promoting cell motility. Correlative evidence also supports this hypothesis, as palladin levels are typically up-regulated in cells that are actively migrating: in developing vertebrate embryos, in cells along a wound edge, and in metastatic cancer cells. Recently, a mutation in the human palladin gene was implicated in an unusually penetrant form of inherited pancreatic cancer, which has stimulated new ideas about the role of palladin in invasive cancer.


Assuntos
Citoesqueleto de Actina/ultraestrutura , Movimento Celular/fisiologia , Proteínas dos Microfilamentos/fisiologia , Citoesqueleto de Actina/fisiologia , Animais , Moléculas de Adesão Celular/metabolismo , Proteínas do Citoesqueleto/genética , Proteínas do Citoesqueleto/metabolismo , Citoesqueleto/metabolismo , Humanos , Proteínas dos Microfilamentos/genética , Modelos Biológicos , Mutação , Fosfoproteínas/genética , Fosfoproteínas/metabolismo , Fator de Crescimento Transformador beta1/metabolismo , Cicatrização/fisiologia
20.
J Cell Sci ; 119(Pt 16): 3316-24, 2006 Aug 15.
Artigo em Inglês | MEDLINE | ID: mdl-16868024

RESUMO

Palladin is a widely expressed phosphoprotein that plays an important role in organizing the actin cytoskeleton. Palladin is concentrated in multiple actin-based structures involved in cell motility and adhesion, including stress fibers, focal adhesions, cell-cell junctions, growth cones and Z-discs. Here, we show that palladin also localizes to the dorsal, circular ruffles that form transiently in response to growth factor stimulation. More importantly, palladin knockdown results in decreased ruffle formation and decreased Rac activation following PDGF treatment. In addition, we describe a novel interaction between palladin and Eps8, a receptor tyrosine kinase (RTK) substrate that participates in the activation of the Rac-specific guanine nucleotide-exchange function of Sos-1. Eps8 was identified as a molecular partner for palladin in a yeast two-hybrid screen, and the interaction was confirmed biochemically in co-immunoprecipitation assays. The two proteins were found to colocalize extensively in dorsal ruffles. Palladin also localizes to podosomes after phorbol ester stimulation, and palladin knockdown results in decreased podosome formation in response to PDBu. Together, these data provide strong evidence for a direct and specific interaction between palladin and Eps8, and suggest that they act together in the rapid and transient remodeling of the actin cytoskeleton, which promotes the formation of highly dynamic membrane protrusions in response to PDGF and phorbol ester treatment.


Assuntos
Extensões da Superfície Celular/fisiologia , Proteínas do Citoesqueleto/metabolismo , Músculo Liso Vascular/metabolismo , Fosfoproteínas/metabolismo , Proteínas/metabolismo , Actinas/metabolismo , Proteínas Adaptadoras de Transdução de Sinal/genética , Proteínas Adaptadoras de Transdução de Sinal/fisiologia , Animais , Extensões da Superfície Celular/ultraestrutura , Células Cultivadas , Proteínas do Citoesqueleto/antagonistas & inibidores , Proteínas do Citoesqueleto/genética , Proteínas do Citoesqueleto/fisiologia , Citoesqueleto/metabolismo , Embrião de Mamíferos/citologia , Embrião de Mamíferos/metabolismo , Fibroblastos/citologia , Fibroblastos/metabolismo , Células HeLa , Humanos , Imunoprecipitação , Peptídeos e Proteínas de Sinalização Intracelular/antagonistas & inibidores , Peptídeos e Proteínas de Sinalização Intracelular/genética , Peptídeos e Proteínas de Sinalização Intracelular/metabolismo , Camundongos , Camundongos Knockout , Músculo Liso Vascular/citologia , Músculo Liso Vascular/ultraestrutura , Ésteres de Forbol/farmacologia , Fosfoproteínas/antagonistas & inibidores , Fosfoproteínas/genética , Fator de Crescimento Derivado de Plaquetas/farmacologia , Proteínas/genética , Ratos , Proteína SOS1/metabolismo , Saccharomyces cerevisiae , Técnicas do Sistema de Duplo-Híbrido , Proteínas rac de Ligação ao GTP/metabolismo
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