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植物中的蛋白质无序:来自叶绿体的观点。

Protein disorder in plants: a view from the chloroplast.

机构信息

Estación Experimental de Aula Dei, Consejo Superior de Investigaciones Científicas, Avda, Montañana, 1005, Zaragoza 50059, Spain.

出版信息

BMC Plant Biol. 2012 Sep 13;12:165. doi: 10.1186/1471-2229-12-165.

Abstract

BACKGROUND

The intrinsically unstructured state of some proteins, observed in all living organisms, is essential for basic cellular functions. In this field the available information from plants is limited but it has been reached a point where these proteins can be comprehensively classified on the basis of disorder, function and evolution.

RESULTS

Our analysis of plant genomes confirms that nuclear-encoded proteins follow the same trend than other multi-cellular eukaryotes; however, chloroplast- and mitochondria- encoded proteins conserve the patterns of Archaea and Bacteria, in agreement with their phylogenetic origin. Based on current knowledge about gene transference from the chloroplast to the nucleus, we report a strong correlation between the rate of disorder of transferred and nuclear-encoded proteins, even for polypeptides that play functional roles back in the chloroplast. We further investigate this trend by reviewing the set of chloroplast ribosomal proteins, one of the most representative transferred gene clusters, finding that the ribosomal large subunit, assembled from a majority of nuclear-encoded proteins, is clearly more unstructured than the small one, which integrates mostly plastid-encoded proteins.

CONCLUSIONS

Our observations suggest that the evolutionary dynamics of the plant nucleus adds disordered segments to genes alike, regardless of their origin, with the notable exception of proteins currently encoded in both genomes, probably due to functional constraints.

摘要

背景

在所有生物体中观察到的一些蛋白质的固有无组织状态对于基本的细胞功能是必不可少的。在这个领域,来自植物的可用信息是有限的,但已经达到了可以根据无序性、功能和进化对这些蛋白质进行全面分类的地步。

结果

我们对植物基因组的分析证实,核编码蛋白遵循与其他多细胞真核生物相同的趋势;然而,叶绿体和线粒体编码的蛋白质保留了古细菌和细菌的模式,与它们的系统发生起源一致。根据目前关于叶绿体向细胞核转移基因的知识,我们报告了转移和核编码蛋白无序率之间的强相关性,即使对于在叶绿体中发挥功能作用的多肽也是如此。我们通过回顾核糖体蛋白这一组最具代表性的转移基因簇进一步研究了这一趋势,发现由大多数核编码蛋白组装而成的核糖体大亚基明显比主要由质体编码蛋白组成的小亚基更无序。

结论

我们的观察表明,植物细胞核的进化动态为类似的基因添加无序片段,无论其起源如何,只有当前在两个基因组中都编码的蛋白质是例外,这可能是由于功能限制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2397/3460767/edb0bbf20d98/1471-2229-12-165-1.jpg

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