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蛋白质中羰基化位点的出现和占据模式。

Pattern of occurrence and occupancy of carbonylation sites in proteins.

机构信息

Saraswathipuram, Mysore, India.

出版信息

Proteomics. 2011 Nov;11(21):4166-73. doi: 10.1002/pmic.201100223. Epub 2011 Sep 14.

Abstract

Proteins are targets for modification by reactive oxygen species, and carbonylation is an important irreversible modification that increases during oxidative stress. While information on protein carbonylation is accumulating, its pattern is not yet understood. We have made a meta-analysis of the available literature data (456 carbonylation sites on 208 proteins) to appreciate the nature of carbonylation sites in proteins. Of the carbonylated (Arg, Lys, Pro, and Thr - RKPT) amino acids, Lys is the most abundant, whereas Pro is the most susceptible and Thr is the least susceptible. The incidence of carbonylation is lower in the N-terminal part of the protein primary sequence. Although a significantly higher number of carbonylated sites occur in Arg-, Lys-, Pro- and Thr-rich regions of proteins, the hydropathy environment of carbonylated sites is not significantly different from potential carbonylation sites. Comparison of metal-catalyzed oxidation of two closely related proteins indicates that this type of carbonylation might not be very specific in proteins. Interestingly, carbonylated sites show a very strong tendency to cluster together in the protein primary sequence hinting at some sort of discerning mechanism. While some attributes of protein carbonylation appear to be random, further investigations are warranted to appreciate the deterministic nature of protein carbonylation sites.

摘要

蛋白质是活性氧物质修饰的靶标,而羰基化作用是一种重要的不可逆修饰,在氧化应激过程中会增加。尽管关于蛋白质羰基化的信息在不断增加,但它的模式仍未被理解。我们对现有文献数据(208 个蛋白质上的 456 个羰基化位点)进行了荟萃分析,以了解蛋白质中羰基化位点的性质。在被羰基化的(精氨酸、赖氨酸、脯氨酸和苏氨酸 - RKPT)氨基酸中,赖氨酸最为丰富,而脯氨酸最易被羰基化,苏氨酸最不易被羰基化。蛋白质一级序列的 N 末端部分的羰基化发生率较低。尽管在富含精氨酸、赖氨酸、脯氨酸和苏氨酸的蛋白质区域中发生羰基化的位点数量显著增加,但羰基化位点的亲水性环境与潜在的羰基化位点没有显著差异。对两种密切相关的蛋白质的金属催化氧化的比较表明,这种类型的羰基化在蛋白质中可能不是非常特异的。有趣的是,羰基化位点在蛋白质一级序列中非常强烈地倾向于聚集在一起,暗示着某种识别机制。虽然蛋白质羰基化的某些属性似乎是随机的,但需要进一步的研究来了解蛋白质羰基化位点的确定性本质。

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