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Publication : Tex13a Optimizes Sperm Motility <i>via</i> Its Potential Roles in mRNA Turnover.

First Author  Li Y Year  2021
Journal  Front Cell Dev Biol Volume  9
Pages  761627 PubMed ID  34733855
Mgi Jnum  J:312855 Mgi Id  MGI:6792163
Doi  10.3389/fcell.2021.761627 Citation  Li Y, et al. (2021) Tex13a Optimizes Sperm Motility via Its Potential Roles in mRNA Turnover. Front Cell Dev Biol 9:761627
abstractText  mRNAs have been found to undergo substantial selective degradation during the late stages of spermiogenesis. However, the mechanisms regulating this biological process are unknown. In this report, we have identified Tex13a, a spermatid-specific gene that interacts with the CCR4-NOT complex and is implicated in the targeted degradation of mRNAs encoding particular structural components of sperm. Deletion of Tex13a led to a delayed decay of these mRNAs, lowered the levels of house-keeping genes, and ultimately lowered several key parameters associated with the control of sperm motility, such as the path velocity (VAP, average path velocity), track speed (VCL, velocity curvilinear), and rapid progression.
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