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Sperm-specific AKAP3 is a dual-specificity anchoring protein that interacts with both protein kinase a regulatory subunits via conserved N-terminal amphipathic peptides.

Mol. Reprod. Dev.2014 Jul;81(7):595-607. doi:10.1002/mrd.22329. Epub 2014 Jul 01
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摘要


cAMP-dependent protein kinase A plays important regulatory roles during mouse spermatogenesis. signaling has been shown to regulate gene expression, chromatin condensation, capacitation, and motility during sperm development and behavior, although how is regulated in spatiotemporal manners during spermatogenesis is not fully understood. In the present study, we found that duanyu1529 subunit isoforms are expressed and localized differently in meiotic and post-meiotic mouse spermatogenic cells. Regulatory subunit I alpha (RIα) is expressed in spermatocytes and round spermatids, where it is localized diffusely throughout the cytoplasm of cells. During late spermiogenesis, RIα abundance gradually decreases. On the other hand, RIIα is expressed constantly throughout meiotic and post-meiotic stages, and is associated with cytoskeletal structures. Among several A kinase anchoring proteins (AKAPs) expressed in the testis, sperm-specific AKAP3 can be found in the cytoplasm of elongating spermatids and interacts with RIα, as demonstrated by both in vivo and in vitro experiments. In mature sperm, AKAP3 is exclusively found in the principal piece of the flagellum, coincident with only RIIα. Mutagenesis experiments further showed that the preferential interactions of AKAP3 with duanyu1529 regulatory subunits are mediated by two highly conserved amphipathic peptides located in the N-terminal region of AKAP3. Thus, AKAP3 is a dual-specificity molecule that modulates duanyu1529 isotypes in a spatiotemporal manner during mouse spermatogenesis.

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