首页> 美国卫生研究院文献>PLoS Clinical Trials >Involvement of Complexin 2 in Docking, Locking and Unlocking of Different SNARE Complexes during Sperm Capacitation and Induced Acrosomal Exocytosis
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Involvement of Complexin 2 in Docking, Locking and Unlocking of Different SNARE Complexes during Sperm Capacitation and Induced Acrosomal Exocytosis

机译:Complexin 2在精子获能和诱导的顶体胞吐过程中参与不同的SNARE复合物的对接,锁定和解锁

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摘要

Acrosomal exocytosis (AE) is an intracellular multipoint fusion reaction of the sperm plasma membrane (PM) with the outer acrosomal membrane (OAM). This unique exocytotic event enables the penetration of the sperm through the zona pellucida of the oocyte. We previously observed a stable docking of OAM to the PM brought about by the formation of the trans-SNARE complex (syntaxin 1B, SNAP 23 and VAMP 3). By using electron microscopy, immunochemistry and immunofluorescence techniques in combination with functional studies and proteomic approaches, we here demonstrate that calcium ionophore-induced AE results in the formation of unilamellar hybrid membrane vesicles containing a mixture of components originating from the two fused membranes. These mixed vesicles (MV) do not contain the earlier reported trimeric SNARE complex but instead possess a novel trimeric SNARE complex that contained syntaxin 3, SNAP 23 and VAMP 2, with an additional SNARE interacting protein, complexin 2. Our data indicate that the earlier reported raft and capacitation-dependent docking phenomenon between the PM and OAM allows a specific rearrangement of molecules between the two docked membranes and is involved in (1) recruiting SNAREs and complexin 2 in the newly formed lipid-ordered microdomains, (2) the assembly of a fusion-driving SNARE complex which executes Ca2+-dependent AE, (3) the disassembly of the earlier reported docking SNARE complex, (4) the recruitment of secondary zona binding proteins at the zona interacting sperm surface. The possibility to study separate and dynamic interactions between SNARE proteins, complexin and Ca2+ which are all involved in AE make sperm an ideal model for studying exocytosis.
机译:顶体胞吐作用(AE)是精子质膜(PM)与顶体外膜(OAM)的细胞内多点融合反应。这种独特的胞吐事件使精子穿过卵母细胞的透明带渗透。我们先前观察到了反式SNARE复合物(突触蛋白1B,SNAP 23和VAMP 3)的形成导致OAM与PM的稳定对接。通过使用电子显微镜,免疫化学和免疫荧光技术结合功能研究和蛋白质组学方法,我们在这里证明钙离子载体诱导的AE导致单层杂化膜囊泡的形成,该囊泡包含源自两个融合膜的成分的混合物。这些混合囊泡(MV)不包含更早报道的三聚体SNARE复合物,而是拥有一种新型三聚体SNARE复合物,其中包含语法3,SNAP 23和VAMP 2,以及一个额外的SNARE相互作用蛋白complexin 2。报道的PM和OAM之间依赖筏和能的对接现象使两个对接膜之间的分子发生特定的重排,并涉及(1)在新形成的脂质有序微域中募集SNARE和complexin 2,(2)组装一个执行Ca 2 + 依赖的AE的融合驱动SNARE复合物的制备;(3)较早报道的对接SNARE复合物的拆卸;(4)在透明带相互作用时募集第二个透明带结合蛋白精子表面。研究与AE有关的SNARE蛋白,复合蛋白和Ca 2 + 之间的动态相互作用的可能性使精子成为研究胞吐作用的理想模型。

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