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基因中心视角下的人类蛋白质组计划:以 18 号染色体俄罗斯路线图为例。

Gene-centric view on the human proteome project: the example of the Russian roadmap for chromosome 18.

机构信息

Orekhovich Institute of Biomedical Chemistry, Russian Academy of Medical Sciences (RAMS), Moscow, Russia.

出版信息

Proteomics. 2011 May;11(10):1853-6. doi: 10.1002/pmic.201000540.

Abstract

During the 2010 Human Proteome Organization Congress in Sydney, a gene-centric approach emerged as a feasible and tractable scaffold for assemblage of the Human Proteome Project. Bringing the gene-centric principle into practice, a roadmap for the 18th chromosome was drafted, postulating the limited sensitivity of analytical methods, as a serious bottleneck in proteomics. In the context of the sensitivity problem, we refer to the "copy number of protein molecules" as a measurable assessment of protein abundance. The roadmap is focused on the development of technology to attain the low- and ultralow -"copied" portion of the proteome. Roadmap merges the genomic, transcriptomic and proteomic levels to identify the majority of 285 proteins from 18th chromosome - master proteins. Master protein is the primary translation of the coding sequence and resembling at least one of the known isoforms, coded by the gene. The executive phase of the roadmap includes the expansion of the study of the master proteins with alternate splicing, single amino acid polymorphisms (SAPs) and post-translational modifications. In implementing the roadmap, Russian scientists are expecting to establish proteomic technologies for integrating MS and atomic force microscopy (AFM). These technologies are anticipated to unlock the value of new biomarkers at a detection limit of 10(-18) M, i.e. 1 protein copy per 1 μL of plasma. The roadmap plan is posted at www.proteome.ru/en/roadmap/ and a forum for discussion of the document is supported.

摘要

在 2010 年悉尼人类蛋白质组组织大会上,基因中心方法作为人类蛋白质组计划组装的可行且易于处理的支架出现。为了将基因中心原则付诸实践,起草了第 18 号染色体路线图,假设分析方法的灵敏度有限,是蛋白质组学中的一个严重瓶颈。在灵敏度问题的背景下,我们将“蛋白质分子的拷贝数”称为蛋白质丰度的可衡量评估。该路线图专注于开发技术,以达到蛋白质组中低拷贝和超低拷贝部分。路线图将基因组、转录组和蛋白质组水平融合在一起,以鉴定第 18 号染色体上的 285 种蛋白质中的大部分 - 主蛋白质。主蛋白质是编码序列的主要翻译,至少类似于编码基因的已知同工型之一。路线图的执行阶段包括扩展对具有可变剪接、单个氨基酸多态性 (SAP) 和翻译后修饰的主蛋白质的研究。在实施路线图时,俄罗斯科学家预计将建立整合 MS 和原子力显微镜 (AFM) 的蛋白质组学技术。这些技术有望在检测限为 10(-18) M 的情况下(即 1μL 血浆中有 1 个蛋白质拷贝),解锁新生物标志物的价值。路线图计划发布在 www.proteome.ru/en/roadmap/,并支持对此文档进行讨论的论坛。

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