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鲍鱼卵壳中的 ZP 域蛋白包括 VERL 的一个直系同源物,该蛋白在正选择下与溶菌酶和 18kDa 精子蛋白结合。

ZP domain proteins in the abalone egg coat include a paralog of VERL under positive selection that binds lysin and 18-kDa sperm proteins.

机构信息

Department of Genome Sciences, University of Washington, USA.

出版信息

Mol Biol Evol. 2010 Jan;27(1):193-203. doi: 10.1093/molbev/msp221.

Abstract

Identifying fertilization molecules is key to our understanding of reproductive biology, yet only a few examples of interacting sperm and egg proteins are known. One of the best characterized comes from the invertebrate archeogastropod abalone (Haliotis spp.), where sperm lysin mediates passage through the protective egg vitelline envelope (VE) by binding to the VE protein vitelline envelope receptor for lysin (VERL). Rapid adaptive divergence of abalone lysin and VERL are an example of positive selection on interacting fertilization proteins contributing to reproductive isolation. Previously, we characterized a subset of the abalone VE proteins that share a structural feature, the zona pellucida (ZP) domain, which is common to VERL and the egg envelopes of vertebrates. Here, we use additional expressed sequence tag sequencing and shotgun proteomics to characterize this family of proteins in the abalone egg VE. We expand 3-fold the number of known ZP domain proteins present within the VE (now 30 in total) and identify a paralog of VERL (vitelline envelope zona pellucida domain protein [VEZP] 14) that contains a putative lysin-binding motif. We find that, like VERL, the divergence of VEZP14 among abalone species is driven by positive selection on the lysin-binding motif alone and that these paralogous egg VE proteins bind a similar set of sperm proteins including a rapidly evolving 18-kDa paralog of lysin, which may mediate sperm-egg fusion. This work identifies an egg coat paralog of VERL under positive selection and the candidate sperm proteins with which it may interact during abalone fertilization.

摘要

鉴定受精分子是我们理解生殖生物学的关键,但目前仅了解少数几种相互作用的精子和卵子蛋白。其中研究最透彻的一个例子来自无脊椎动物古腹足纲鲍鱼(Haliotis spp.),精子溶素通过与卵黄包膜受体溶素(VERL)结合来介导穿过保护性卵黄包膜(VE),从而发挥作用。鲍鱼溶素和 VERL 的快速适应性进化是正选择作用于相互作用的受精蛋白导致生殖隔离的一个例子。此前,我们鉴定了鲍鱼 VE 蛋白的一个亚组,这些蛋白具有结构特征,即透明带(ZP)结构域,该结构域与 VERL 和脊椎动物的卵包膜共同存在。在这里,我们使用额外的表达序列标签测序和鸟枪法蛋白质组学来鉴定鲍鱼卵 VE 中的这种蛋白家族。我们将 VE 中已知的 ZP 结构域蛋白数量扩大了 3 倍(现在共有 30 个),并鉴定了 VERL 的一个同源物(卵黄包膜透明带结构域蛋白[VEZP]14),它含有一个假定的溶素结合基序。我们发现,与 VERL 一样,鲍鱼物种之间 VEZP14 的分化是由溶素结合基序的正选择驱动的,这些同源的卵 VE 蛋白结合了一组相似的精子蛋白,包括一个快速进化的 18kDa 溶素同源物,它可能介导精子-卵融合。这项工作鉴定了一个受正选择作用的 VERL 卵被蛋白的同源物,以及在鲍鱼受精过程中可能与之相互作用的候选精子蛋白。

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