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Transmembrane Domain Lengths Serve as Signatures of Organismal Complexity and ViralTransport Mechanisms

机译:跨膜域长度作为有机物复杂性和病毒性的标志。运输机制

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摘要

It is known that membrane proteins are important in various secretory pathways, with a possible role of their transmembrane domains (TMDs) as sorting determinant factors. One key aspect of TMDs associated with various “checkposts” (i.e. organelles) of intracellular trafficking is their length. To explore possible linkages in organisms with varying “complexity” and differences in TMD lengths of membrane proteins associated with different organelles (such as Endoplasmic Reticulum, Golgi, Endosomes, Nucleus, Plasma Membrane), we analyzed ~70000 membrane protein sequences in over 300 genomes of fungi, plants, non-mammalian vertebrates and mammals. We report that as we move from simpler to complex organisms, variation in organellar TMD lengths decreases, especially compared to their respective plasma membranes, with increasing organismal complexity. This suggests an evolutionary pressure in modulating length of TMDs of membrane proteins with increasing complexity of communication between sub-cellular compartments. We also report functional applications of our findings by discovering remarkable distinctions in TMD lengths of membrane proteins associated with different intracellular transport pathways. Finally, we show that TMD lengths extracted from viral proteins can serveas somewhat weak indicators of viral replication sites in plant cells but verystrong indicators of different entry pathways employed by animal viruses.
机译:众所周知,膜蛋白在各种分泌途径中都很重要,它们的跨膜结构域(TMD)可能是分类决定因素。与细胞内运输的各种“检查站”(即细胞器)相关的TMD的一个关键方面是其长度。为了探索具有不同“复杂性”的生物以及可能与不同细胞器(例如内质网,高尔基体,内体,核,质膜)相关的膜蛋白的TMD长度差异的生物之间的联系,我们分析了300多个基因组中的〜70000膜蛋白序列真菌,植物,非哺乳动物的脊椎动物和哺乳动物。我们报告说,随着我们从更简单的生物转变为复杂的生物,有机体TMD长度的变化减少,尤其是与它们各自的质膜相比,随着生物复杂性的增加而降低。这表明在调节膜蛋白TMDs长度方面的进化压力,伴随着亚细胞区室之间通信的复杂性增加。我们还通过发现与不同细胞内转运途径相关的膜蛋白在TMD长度上的显着差异来报告我们的发现的功能应用。最后,我们表明从病毒蛋白中提取的TMD长度可以发挥作用作为植物细胞中病毒复制位点的弱指标,但非常动物病毒采用不同进入途径的有力指标。

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