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1.
Am J Physiol Renal Physiol ; 300(4): F1026-42, 2011 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-21289056

RESUMO

Podocytes are considered terminally differentiated cells in the mature kidney under normal conditions. In the face of injury, podocytes may proceed along several possible pathways, including dedifferentiation and proliferation, persistent cell cycle arrest, hypertrophy, apoptosis, or necrosis. There is mounting evidence that transdifferentiation into a dysregulated phenotype may also be a potential cell fate. We have previously reported that the transcript of SM22α, an actin-binding protein considered one of the earliest markers of smooth muscle differentiation, is upregulated nearly 70-fold in glomeruli of rats with passive Heymann nephritis (PHN). In contrast, the SM22α transcript is absent in normal adult rat glomeruli. The purpose of this study was to define SM22α's expression during kidney development and its role in glomerular diseases characterized by podocyte injury and proteinuria. During glomerulogenesis and podocyte differentiation, SM22α was expressed in glomeruli. This expression disappeared with glomerular maturation. Along with SM22α induction in PHN, confirmed at both mRNA and protein levels, SM22α was also induced across a broad range of proteinuric diseases, including experimental animal models (puromycin aminonucleoside nephropathy, adriamycin nephropathy, passive nephrotoxic nephritis, and diet-induced obesity) and human diseases (collapsing glomerulopathy, diabetic nephropathy, classic focal segmental glomerulosclerosis, IgA nephropathy, minimal-change disease, membranous nephropathy, and membranoproliferative glomerulonephritis). Crescentic glomerulonephritis was induced in SM22α +/+ and SM22α -/- mice by intraperitoneal injection of sheep anti-rabbit glomeruli antibody 12.5 mg/20 g body wt × 2 doses (n = 12-15/group), with mice euthanized at 7 and 14 days. Compared with SM22α -/- mice, SM22α +/+ mice demonstrated worse disease by histopathological parameters. In addition, there was greater apoptosis (cleaved caspase-3 immunostaining), fewer podocytes (Wilms' tumor-1 immunostaining), and less proliferation (Ki-67 immunostaining) in diseased SM22α +/+ mice. Furthermore, there was decreased activation of Erk1/2 in diseased SM22α +/+ mice. We conclude that the de novo expression of SM22α in glomerular epithelial cells affects the course of crescentic glomerulonephritis.


Assuntos
Nefropatias/metabolismo , Glomérulos Renais/metabolismo , Proteínas dos Microfilamentos/metabolismo , Proteínas Musculares/metabolismo , Podócitos/metabolismo , Proteinúria/metabolismo , Animais , Apoptose , Western Blotting , Humanos , Imuno-Histoquímica , Nefropatias/patologia , Glomérulos Renais/patologia , Camundongos , Camundongos Knockout , Proteínas dos Microfilamentos/genética , Proteínas Musculares/genética , Podócitos/patologia , Proteinúria/patologia
2.
Am J Pathol ; 165(4): 1175-85, 2004 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-15466384

RESUMO

Podocytes are highly specialized and terminally differentiated glomerular cells that play a vital role in renal physiology, including the prevention of proteinuria. Cyclin-dependent kinase 5 (CDK5) has been shown to influence several cellular processes in other terminally differentiated cells, in particular neurons. In this study, we examined the role of CDK5 in podocyte differentiation, proliferation, and morphology. In conditionally immortalized mouse podocytes in culture, CDK5 increased in association with podocyte differentiation. During mouse glomerulogenesis in vivo, CDK5 expression was predominantly detected in podocytes from the capillary loop stage to maturation and persisted in the podocytes of adult glomeruli. In contrast, CDK5 was markedly decreased in the proliferating and dedifferentiated podocytes of mice with anti-glomerular basement membrane nephritis and in human immunodeficiency virus transgenic mice. p35, the activator of CDK5, was also detected in podocytes and the p35/CDK5 complex was active. Cell fractionation studies showed that active p35/CDK5 was mainly localized to the plasma membrane. Specific inhibition of CDK5 in differentiated cultured podocytes, either pharmacologically or with siRNA, induced shape changes, with cellular elongation and loss of process formation compared to the characteristic arborized phenotype. These data suggest a role for CDK5 as a regulator of podocyte differentiation, proliferation, and morphology.


Assuntos
Quinases Ciclina-Dependentes/biossíntese , Células Epiteliais/citologia , Células Epiteliais/enzimologia , Glomérulos Renais/citologia , Glomérulos Renais/enzimologia , Fosfotransferases , Animais , Western Blotting , Diferenciação Celular , Divisão Celular , Membrana Celular/metabolismo , Células Cultivadas , Quinase 5 Dependente de Ciclina , Modelos Animais de Doenças , Ativação Enzimática/fisiologia , Imunofluorescência , Nefropatias/enzimologia , Nefropatias/metabolismo , Glomérulos Renais/crescimento & desenvolvimento , Camundongos , Proteínas , Reação em Cadeia da Polimerase Via Transcriptase Reversa
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