L González-Brusi, Jg Hamzé, I Lamas-Toranzo, M Jiménez-Movilla, P Bermejo-Álvarez
Animal Reproduction Department, INIA-CSIC, Madrid, Spain.
Department of Cell Biology and Histology, Medical School, IMIB, University of Murcia, Murcia, Spain.
Front Cell Dev Biol. 2022 Jun 3;10:854115. doi: 10.3389/fcell.2022.854115. eCollection 2022.
Fertilization involves the fusion of two gametes by means of yet unknown membrane binding and fusion events. Over the last years, many sperm proteins have been uncovered to play essential roles in sperm-egg fusion in mammals, but their precise role in fertilization remains unknown, being unclear how these proteins interact with each other or with other yet unknown sperm proteins. The aim of this study has been to identify possible sperm proteins interacting with TMEM95, a protein essential for fertilization located in the sperm membrane. A list of 41 sperm proteins that were pulled down with TMEM95 and identified by mass spectrometry did not include other sperm proteins known to play a role in fertilization, suggesting an independent role of TMEM95 in fertilization. Between these lists, OLFR601 is allocated to the acrosomal region and may mediate affinity for an odorant involved in fertilization. However, disruption did not impair the sperm fertilization ability, suggesting that its function may be redundant with that of other sperm proteins.
受精过程涉及两个配子通过尚不清楚的膜结合和融合事件进行融合。在过去几年中,许多精子蛋白已被发现对哺乳动物的精卵融合起着至关重要的作用,但其在受精过程中的精确作用仍不清楚,这些蛋白如何相互作用或与其他未知的精子蛋白相互作用尚不清楚。本研究的目的是确定可能与TMEM95相互作用的精子蛋白,TMEM95是一种位于精子膜上对受精至关重要的蛋白。通过质谱鉴定出的与TMEM95一起被拉下的41种精子蛋白列表中,不包括其他已知在受精中起作用的精子蛋白,这表明TMEM95在受精中具有独立作用。在这些列表中,OLFR601定位于顶体区域,可能介导对受精中涉及的一种气味剂的亲和力。然而,破坏并没有损害精子的受精能力,这表明其功能可能与其他精子蛋白的功能冗余。