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Comparative structural modeling and inference of conserved protein classes in Drosophila seminal fluid

机译:果蝇精液中保守蛋白类别的比较结构建模和推论

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摘要

The constituents of seminal fluid are a complex mixture of proteins and other molecules, most of whose functions have yet to be determined and many of which are rapidly evolving. As a step in elucidating the roles of these proteins and exposing potential functional similarities hidden by their rapid evolution, we performed comparative structural modeling on 28 of 52 predicted seminal proteins produced in the Drosophila melanogaster male accessory gland. Each model was characterized by defining residues likely to be important for structure and function. Comparisons of known protein structures with predicted accessory gland proteins (Acps) revealed similarities undetectable by primary sequence alignments. The structures predict that Acps fall into several categories: regulators of proteolysis, lipid modifiers, immunity/protection, sperm-binding proteins, and peptide hormones. The comparative structural modeling approach indicates that major functional classes of mammalian and Drosophila seminal fluid proteins are conserved, despite differences in reproductive strategies. This is particularly striking in the face of the rapid protein sequence evolution that characterizes many reproductive proteins, including Drosophila and mammalian seminal proteins.
机译:精液的成分是蛋白质和其他分子的复杂混合物,其大多数功能尚未确定,其中许多功能正在迅速发展。作为阐明这些蛋白质的作用并揭示其快速进化所隐藏的潜在功能相似性的步骤,我们对果蝇雄性副果皮中产生的52种预测的精蛋白中的28种进行了比较结构建模。每个模型的特征是定义可能对结构和功能很重要的残基。已知蛋白质结构与预测的辅助腺蛋白(Acps)的比较显示,一级序列比对无法检测到相似性。这些结构预测Acps分为几类:蛋白水解调节剂,脂质修饰剂,免疫/保护,精子结合蛋白和肽激素。比较的结构建模方法表明,尽管生殖策略不同,但哺乳动物和果蝇精液蛋白的主要功能类别得以保留。面对表征许多生殖蛋白(包括果蝇和哺乳动物精浆蛋白)的快速蛋白序列进化,这一点尤其令人震惊。

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