p38α regulates actin cytoskeleton and cytokinesis in hepatocytes during development and aging

p38α 在发育和衰老过程中调节肝细胞中的肌动蛋白细胞骨架和胞质分裂

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作者:Ana M Tormos, Sergio Rius-Pérez, María Jorques, Patricia Rada, Lorena Ramirez, Ángela M Valverde, Ángel R Nebreda, Juan Sastre, Raquel Taléns-Visconti

Background

Hepatocyte poliploidization is an age-dependent process, being cytokinesis failure the main mechanism of polyploid hepatocyte formation. Our

Conclusions

p38α MAPK is essential for actin dynamics with age in hepatocytes.

Methods

Wild type and p38α liver-specific knock out mice at different ages (after weaning, adults and old) were used.

Results

We show that p38α MAPK deficiency induces actin disassembly upon aging and also cytokinesis failure leading to enhanced binucleation. Although the steady state levels of cyclin D1 in wild type and p38α knock out old livers remained unaffected, cyclin B1- a marker for G2/M transition- was significantly overexpressed in p38α knock out mice. Our findings suggest that hepatocytes do enter into S phase but they do not complete cell division upon p38α deficiency leading to cytokinesis failure and binucleation. Moreover, old liver-specific p38α MAPK knock out mice exhibited reduced F-actin polymerization and a dramatic loss of actin cytoskeleton. This was associated with abnormal hyperactivation of RhoA and Cdc42 GTPases. Long-term p38α deficiency drives to inactivation of HSP27, which seems to account for the impairment in actin cytoskeleton as Hsp27-silencing decreased the number and length of actin filaments in isolated hepatocytes. Conclusions: p38α MAPK is essential for actin dynamics with age in hepatocytes.

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