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黄色黏球菌中不同亚蛋白质组的组成:代谢成本与氨基酸可用性

Composition of distinct sub-proteomes in Myxococcus xanthus: metabolic cost and amino acid availability.

作者信息

Whitworth David E, Slade Susan E, Mironas Adrian

机构信息

Institute of Biological, Environmental and Rural Sciences, Aberystwyth University, Ceredigion, SY23 3DD, UK.

School of Life Sciences, University of Warwick, Gibbet Hill Road, Coventry, CV4 7AL, UK.

出版信息

Amino Acids. 2015 Dec;47(12):2521-31. doi: 10.1007/s00726-015-2042-x. Epub 2015 Jul 11.

Abstract

Subsets of proteins involved in distinct functional processes are subject to different selective pressures. We investigated whether there is an amino acid composition bias (AACB) inherent in discrete subsets of proteins, and whether we could identify changing patterns of AACB during the life cycle of the social bacterium Myxococcus xanthus. We quantitatively characterised the cellular, soluble secreted, and outer membrane vesicle (OMV) sub-proteomes of M. xanthus, identifying 315 proteins. The AACB of the cellular proteome differed only slightly from that deduced from the genome, suggesting that genome-inferred proteomes can accurately reflect the AACB of their host. Inferred AA deficiencies arising from prey consumption were exacerbated by the requirements of the 68%GC genome, whose character thus seems to be selected for directly rather than via the proteome. In our analysis, distinct subsets of the proteome (whether segregated spatially or temporally) exhibited distinct AACB, presumably tailored according to the needs of the organism's lifestyle and nutrient availability. Secreted AAs tend to be of lower cost than those retained in the cell, except for the early developmental A-signal, which is a particularly costly sub-proteome. We propose a model of AA reallocation during the M. xanthus life cycle, involving ribophagy during early starvation and sequestration of limiting AAs within cells during development.

摘要

参与不同功能过程的蛋白质亚群受到不同的选择压力。我们研究了蛋白质离散亚群中是否存在固有的氨基酸组成偏差(AACB),以及我们是否能够识别社会细菌黄色粘球菌生命周期中AACB的变化模式。我们定量表征了黄色粘球菌的细胞、可溶性分泌和外膜囊泡(OMV)亚蛋白质组,鉴定出315种蛋白质。细胞蛋白质组的AACB与从基因组推导出来的AACB仅略有不同,这表明基因组推断的蛋白质组能够准确反映其宿主的AACB。由于68%GC含量的基因组的需求,捕食导致的推断氨基酸缺乏加剧,因此其特征似乎是直接选择的,而不是通过蛋白质组。在我们的分析中,蛋白质组的不同亚群(无论在空间上还是时间上分离)表现出不同的AACB,大概是根据生物体的生活方式和营养可用性的需求进行调整的。分泌的氨基酸往往比保留在细胞中的氨基酸成本更低,除了早期发育A信号,这是一个成本特别高的亚蛋白质组。我们提出了一个黄色粘球菌生命周期中氨基酸重新分配的模型,包括早期饥饿期间的核糖体自噬和发育期间细胞内限制氨基酸的隔离。

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