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骨与骨骼健康结局的蛋白质组学研究。

Proteomic studies of bone and skeletal health outcomes.

机构信息

Oregon Health & Science University, Portland, USA.

Pacific Northwest National Laboratory, Richland, WA, USA.

出版信息

Bone. 2019 Sep;126:18-26. doi: 10.1016/j.bone.2019.03.032. Epub 2019 Apr 4.

Abstract

Proteins are an essential part of essentially all biological processes, and there is enormous variation in protein forms and concentrations that is not reflected in DNA or RNA. Recently there have been rapid advances in the ability to measure protein sequence, modification and concentration, particularly with methods based in mass spectrometry. Global measures of proteins in tissues or in the circulation provide a broad assessment of the proteome that can be extremely useful for discovery, and targeted proteomic measures can yield specific and sensitive assessments of specific peptides and proteins. While most proteomic measures are directed at the detection of consensus peptide sequences, mass spectrometry based proteomic methods also allow a detailed examination of the peptide sequence differences that result from genetic variants and that may have important effects on protein function. In evaluating proteomic data, a number of analytical considerations are important, including an understanding of missing data, the challenge of multiple testing and replication, and the use of rapidly evolving methods in systems biology. While proteomics has not yet had a major impact in skeletal research, interesting recent research has used these approaches in the study of bone cell biology and the discovery of biomarkers of skeletal disorders. Proteomics can be expected to have an increasing influence in the study of bone biology and pathophysiology.

摘要

蛋白质是几乎所有生物过程的基本组成部分,其形式和浓度存在巨大的差异,而这些差异在 DNA 或 RNA 中并未反映出来。最近,在测量蛋白质序列、修饰和浓度的能力方面取得了快速进展,特别是基于质谱的方法。对组织或循环中蛋白质的全局测量提供了对蛋白质组的广泛评估,这对于发现非常有用,而靶向蛋白质组学测量可以对特定肽和蛋白质进行特异性和敏感性评估。虽然大多数蛋白质组学测量都针对检测共识肽序列,但基于质谱的蛋白质组学方法还允许详细检查遗传变异导致的肽序列差异,这些差异可能对蛋白质功能有重要影响。在评估蛋白质组学数据时,有几个分析方面很重要,包括对缺失数据的理解、多重检验和复制的挑战,以及系统生物学中快速发展的方法的使用。虽然蛋白质组学在骨骼研究中尚未产生重大影响,但最近有趣的研究已经在骨细胞生物学研究和骨骼疾病生物标志物的发现中使用了这些方法。蛋白质组学有望在骨生物学和病理生理学研究中产生越来越大的影响。

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