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1.
Life Sci Alliance ; 6(2)2023 02.
Artigo em Inglês | MEDLINE | ID: mdl-36450448

RESUMO

Mitotic kinase Aurora A (AURKA) diverges from other kinases in its multiple active conformations that may explain its interphase roles and the limited efficacy of drugs targeting the kinase pocket. Regulation of AURKA activity by the cell is critically dependent on destruction mediated by the anaphase-promoting complex (APC/CFZR1) during mitotic exit and G1 phase and requires an atypical N-terminal degron in AURKA called the "A-box" in addition to a reported canonical D-box degron in the C-terminus. Here, we find that the reported C-terminal D-box of AURKA does not act as a degron and instead mediates essential structural features of the protein. In living cells, the N-terminal intrinsically disordered region of AURKA containing the A-box is sufficient to confer FZR1-dependent mitotic degradation. Both in silico and in cellulo assays predict the QRVL short linear interacting motif of the A-box to be a phospho-regulated D-box. We propose that degradation of full-length AURKA also depends on an intact C-terminal domain because of critical conformational parameters permissive for both activity and mitotic degradation of AURKA.


Assuntos
Aurora Quinase A , Bioensaio , Humanos , Aurora Quinase A/genética , Núcleo Celular , Proteínas Cdh1
2.
J Cell Biol ; 219(6)2020 06 01.
Artigo em Inglês | MEDLINE | ID: mdl-32236513

RESUMO

How the cell rapidly and completely reorganizes its architecture when it divides is a problem that has fascinated researchers for almost 150 yr. We now know that the core regulatory machinery is highly conserved in eukaryotes, but how these multiple protein kinases, protein phosphatases, and ubiquitin ligases are coordinated in space and time to remodel the cell in a matter of minutes remains a major question. Cyclin B1-Cdk is the primary kinase that drives mitotic remodeling; here we show that it is targeted to the nuclear pore complex (NPC) by binding an acidic face of the kinetochore checkpoint protein, MAD1, where it coordinates NPC disassembly with kinetochore assembly. Localized cyclin B1-Cdk1 is needed for the proper release of MAD1 from the embrace of TPR at the nuclear pore so that it can be recruited to kinetochores before nuclear envelope breakdown to maintain genomic stability.


Assuntos
Proteína Quinase CDC2/metabolismo , Proteínas de Ciclo Celular/metabolismo , Ciclina B1/metabolismo , Cinetocoros/metabolismo , Poro Nuclear/metabolismo , Transdução de Sinais/genética , Sistemas CRISPR-Cas , Pontos de Checagem do Ciclo Celular/efeitos dos fármacos , Pontos de Checagem do Ciclo Celular/genética , Proteínas de Ciclo Celular/antagonistas & inibidores , Proteínas de Ciclo Celular/genética , Ciclina B1/genética , Éxons , Edição de Genes , Instabilidade Genômica/genética , Células HeLa , Humanos , Proteínas Mad2/genética , Proteínas Mad2/metabolismo , Espectrometria de Massas , Mutação , Membrana Nuclear/metabolismo , Complexo de Proteínas Formadoras de Poros Nucleares/metabolismo , Proteínas Nucleares/metabolismo , Ligação Proteica , Proteínas Serina-Treonina Quinases/antagonistas & inibidores , Proteínas Tirosina Quinases/antagonistas & inibidores , Proteínas Proto-Oncogênicas/metabolismo , Transdução de Sinais/fisiologia , Fuso Acromático/metabolismo
3.
Methods Cell Biol ; 144: 1-13, 2018.
Artigo em Inglês | MEDLINE | ID: mdl-29804664

RESUMO

The spindle assembly checkpoint (SAC) is crucial to maintain genomic stability since it prevents premature separation of sister chromatids in mitosis and ensures the fidelity of chromosome segregation. The SAC arrests cells in mitosis and is not satisfied until all kinetochores are stably attached to the mitotic spindle. Improperly attached kinetochores activate the SAC and catalyze the formation of the mitotic checkpoint complex (MCC), containing Mad2, Cdc20, BubR1, and Bub3 proteins. The MCC binds and thereby inhibits the APC/C E3 ubiquitin ligase until the last kinetochore has attached to microtubules. Once the SAC is satisfied, the APC/C promptly activates and targets cyclin B1 and securin for degradation, thus allowing sister chromatids to separate and the cell to exit mitosis. Our understanding of SAC signaling has increased thanks to the development of new genetic, biochemical, molecular, and structural biology techniques. Here, we describe how live-cell imaging microscopy in combination with gene-targeting strategies and biochemical assays can be exploited to investigate the intrinsic properties of the SAC in mammalian cultured cells.


Assuntos
Bioensaio/métodos , Técnicas de Cultura de Células/métodos , Pontos de Checagem da Fase M do Ciclo Celular , Fluorescência , Humanos , Cinetocoros/metabolismo , Proteínas Luminescentes , Microscopia
4.
Nat Genet ; 49(7): 1148-1151, 2017 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-28553959

RESUMO

Through exome sequencing, we identified six individuals with biallelic loss-of-function mutations in TRIP13. All six developed Wilms tumor. Constitutional mosaic aneuploidies, microcephaly, developmental delay and seizures, which are features of mosaic variegated aneuploidy (MVA) syndrome, were more variably present. Through functional studies, we show that TRIP13-mutant patient cells have no detectable TRIP13 and have substantial impairment of the spindle assembly checkpoint (SAC), leading to a high rate of chromosome missegregation. Accurate segregation, as well as SAC proficiency, is rescued by restoring TRIP13 function. Individuals with biallelic TRIP13 or BUB1B mutations have a high risk of embryonal tumors, and here we show that their cells display severe SAC impairment. MVA due to biallelic CEP57 mutations, or of unknown cause, is not associated with embryonal tumors and cells from these individuals show minimal SAC deficiency. These data provide insights into the complex relationships between aneuploidy and carcinogenesis.


Assuntos
Proteínas de Transporte/genética , Segregação de Cromossomos/genética , Neoplasias Renais/genética , Pontos de Checagem da Fase M do Ciclo Celular/genética , Tumor de Wilms/genética , ATPases Associadas a Diversas Atividades Celulares , Aneuploidia , Proteínas de Ciclo Celular/genética , Pré-Escolar , DNA de Neoplasias/genética , Deficiências do Desenvolvimento/genética , Feminino , Predisposição Genética para Doença , Humanos , Leucemia Mieloide Aguda/genética , Microcefalia/genética , Proteínas Associadas aos Microtúbulos/genética , Mosaicismo , Mutação , Neoplasias Primárias Múltiplas/genética , Proteínas Nucleares/genética , Neoplasias Ovarianas/genética , Proteínas Serina-Treonina Quinases/genética , Estabilidade de RNA/genética , Convulsões/genética , Tumor de Células de Sertoli-Leydig/genética
5.
J Cell Sci ; 126(Pt 13): 2845-56, 2013 Jul 01.
Artigo em Inglês | MEDLINE | ID: mdl-23613471

RESUMO

Spatiotemporal regulation of mitotic kinase activity underlies the extensive rearrangement of cellular components required for cell division. One highly dynamic mitotic kinase is Aurora-B (AurB), which has multiple roles defined by the changing localisation of the chromosome passenger complex (CPC) as cells progress through mitosis, including regulation of cytokinesis and abscission. Like other mitotic kinases, AurB is a target of the anaphase-promoting complex (APC/C) ubiquitin ligase during mitotic exit, but it is not known if APC/C-mediated destruction plays any specific role in controlling AurB activity. We have examined the contribution of the Cdh1 coactivator-associated APC/C(Cdh1) to the organization of AurB activity as cells exit mitosis and re-enter interphase. We report that APC/C(Cdh1)-dependent proteolysis restricts a cell-cortex-associated pool of active AurB in space and time. In early G1 phase this pool of AurB is found at protrusions associated with cell spreading. AurB retention at the cortex depends on a formin, FHOD1, critically required to organize the cytoskeleton after division. We identify AurB phosphorylation sites in FHOD1 and show that phosphomutant FHOD1 is impaired in post-mitotic assembly of oriented actin cables. We propose that Cdh1 contributes to spatiotemporal organization of AurB activity and that organization of FHOD1 activity by AurB contributes to daughter cell spreading after mitosis.


Assuntos
Anáfase/genética , Aurora Quinase B/metabolismo , Proteínas Cdh1/metabolismo , Proteínas Fetais/metabolismo , Fase G1/genética , Proteínas Nucleares/metabolismo , Ubiquitina/metabolismo , Actinas/genética , Actinas/metabolismo , Aurora Quinase B/genética , Proteínas Cdh1/genética , Linhagem Celular Tumoral , Movimento Celular , Citoesqueleto/genética , Citoesqueleto/metabolismo , Citoesqueleto/ultraestrutura , Proteínas Fetais/genética , Forminas , Regulação da Expressão Gênica , Humanos , Proteínas Nucleares/genética , Fosforilação , Proteólise , Transdução de Sinais , Fatores de Tempo , Imagem com Lapso de Tempo , Ubiquitina/genética
6.
Leuk Res ; 36(8): 1028-34, 2012 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-22521726

RESUMO

The advantage of Aurora kinase (AK) inhibitors in chronic myeloid leukemia (CML) therapy mostly arises from "off-target" effects on tyrosine kinase (TK) activity of wild type (wt) or mutated Bcr-Abl proteins which drive the disease resistance to imatinib (IM). We proved that the AK inhibitor MK-0457 induces the growth arrest DNA damage-inducible (Gadd) 45a through recruitment of octamer-binding (Oct)-1 transcription factor at a critical promoter region for gene transcription and covalent modifications of histone H3 (lysine 14 acetylation, lysine 9 de-methylation). Such epigenetic chromatin modifications may depict a general mechanism promoting the re-activation of tumor suppressor genes silenced by Bcr-Abl.


Assuntos
Proteínas de Ciclo Celular/genética , Leucemia Mielogênica Crônica BCR-ABL Positiva/genética , Proteínas Nucleares/genética , Fator 1 de Transcrição de Octâmero/fisiologia , Piperazinas/farmacologia , Animais , Antineoplásicos/farmacologia , Aurora Quinases , Proteínas de Ciclo Celular/metabolismo , Células Cultivadas , Resistencia a Medicamentos Antineoplásicos/efeitos dos fármacos , Resistencia a Medicamentos Antineoplásicos/genética , Epigênese Genética/efeitos dos fármacos , Proteínas de Fusão bcr-abl/genética , Proteínas de Fusão bcr-abl/metabolismo , Regulação Leucêmica da Expressão Gênica/efeitos dos fármacos , Histonas/metabolismo , Humanos , Células K562 , Leucemia Mielogênica Crônica BCR-ABL Positiva/tratamento farmacológico , Leucemia Mielogênica Crônica BCR-ABL Positiva/patologia , Camundongos , Proteínas Nucleares/metabolismo , Fator 1 de Transcrição de Octâmero/metabolismo , Piperazinas/uso terapêutico , Regiões Promotoras Genéticas/efeitos dos fármacos , Inibidores de Proteínas Quinases/farmacologia , Inibidores de Proteínas Quinases/uso terapêutico , Proteínas Serina-Treonina Quinases/antagonistas & inibidores , Ativação Transcricional/efeitos dos fármacos , Regulação para Cima/efeitos dos fármacos
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