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The universal algorithm of maturation for secretory and excretory protein precursors

机译:分泌和排泄蛋白前体成熟的通用算法

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摘要

During maturation, most proteins undergo different posttranslational modifications. In most simple cases, signal peptidases remove the signal or leader peptide from the precursors of the secretory proteins during their translocation across the ER membrane. For biologically active proteins, such as enzymes, regulatory and defense proteins, toxins, etc., additional maturation-regulating mechanisms were shown to proceed with limited proteolysis of inactive precursors by specific enzymes. A number of specific enzymes from different cell types selectively cleave proproteins at specific processing sites. In this work, we analyzed the sequences of protein precursors synthesized in the excretory glands of different animals and identified new, non-traditional processing sites. They differ from the motifs previously identified in secreted proteins' precursors and enabled us to reconstruct the sequence of events leading to the conversion of protein precursors into the final products (mature proteins). We also found that in animals, the maturation mechanism of secretory and excretory proteins and the set of enzymes involved are species specific. The processing sites identified in protein precursors in this study are useful for a more detailed genome analysis and more accurate mature protein sequence prediction.
机译:在成熟过程中,大多数蛋白质都会经历不同的翻译后修饰。在最简单的情况下,信号肽酶在其穿过ER膜转运时会从分泌蛋白的前体中去除信号或前导肽。对于生物活性蛋白,例如酶,调节和防御蛋白,毒素等,显示出额外的成熟调节机制是通过特定的酶对非活性前体进行有限的蛋白水解而进行的。来自不同细胞类型的许多特定酶在特定的加工位点选择性切割前蛋白。在这项工作中,我们分析了在不同动物的排泄腺中合成的蛋白质前体的序列,并确定了新的非传统加工位点。它们不同于先前在分泌蛋白前体中鉴定出的基序,使我们能够重建导致蛋白前体转化为最终产物(成熟蛋白)的事件序列。我们还发现,在动物中,分泌蛋白和分泌蛋白的成熟机制以及所涉及的酶种类是物种特异性的。在这项研究中的蛋白质前体中鉴定的加工位点可用于更详细的基因组分析和更准确的成熟蛋白质序列预测。

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