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Full-Text Articles in Cell Biology

Intraflagellar Transport Protein Ift20 Is Essential For Male Fertility And Spermiogenesis In Mice, Zhengang Zhang, Wei Li, Yong Zhang, Ling Zhang, Maria E. Teves, Hong Liu, Jerome F. Strauss 3rd, Gregory J. Pazour, James A. Foster, Rex A. Hess, Zhibing Zhang Nov 2016

Intraflagellar Transport Protein Ift20 Is Essential For Male Fertility And Spermiogenesis In Mice, Zhengang Zhang, Wei Li, Yong Zhang, Ling Zhang, Maria E. Teves, Hong Liu, Jerome F. Strauss 3rd, Gregory J. Pazour, James A. Foster, Rex A. Hess, Zhibing Zhang

University of Massachusetts Medical School Faculty Publications

Intraflagellar transport (IFT) is a conserved mechanism thought to be essential for the assembly and maintenance of cilia and flagella. However, little is known about its role in mammalian sperm flagella formation. To fill this gap, we disrupted the Ift20 gene in male germ cells. Homozygous mutant mice were infertile with significantly reduced sperm counts and motility. In addition, abnormally shaped elongating spermatid heads and bulbous round spermatids were found in the lumen of the seminiferous tubules. Electron microscopy revealed increased cytoplasmic vesicles, fiber-like structures, abnormal accumulation of mitochondria and a decrease in mature lysosomes. The few developed sperm had ...


Pleckstrin Homology (Ph) Domain Leucine-Rich Repeat Protein Phosphatase Controls Cell Polarity By Negatively Regulating The Activity Of Atypical Protein Kinase C, Xiaopeng Xiong, Xin Li, Yang-An Wen, Tianyan Gao Oct 2016

Pleckstrin Homology (Ph) Domain Leucine-Rich Repeat Protein Phosphatase Controls Cell Polarity By Negatively Regulating The Activity Of Atypical Protein Kinase C, Xiaopeng Xiong, Xin Li, Yang-An Wen, Tianyan Gao

Markey Cancer Center Faculty Publications

The proper establishment of epithelial polarity allows cells to sense and respond to signals that arise from the microenvironment in a spatiotemporally controlled manner. Atypical PKCs (aPKCs) are implicated as key regulators of epithelial polarity. However, the molecular mechanism underlying the negative regulation of aPKCs remains largely unknown. In this study, we demonstrated that PH domain leucine-rich repeat protein phosphatase (PHLPP), a novel family of Ser/Thr protein phosphatases, plays an important role in regulating epithelial polarity by controlling the phosphorylation of both aPKC isoforms. Altered expression of PHLPP1 or PHLPP2 disrupted polarization of Caco2 cells grown in 3D cell ...