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通过基于结构的结合特异性建模鉴定新型法尼基转移酶靶标。

Identification of a novel class of farnesylation targets by structure-based modeling of binding specificity.

机构信息

Department of Microbiology and Molecular Genetics, Institute for Medical Research Israel-Canada, Hadassah Medical School, The Hebrew University, Jerusalem, Israel.

出版信息

PLoS Comput Biol. 2011 Oct;7(10):e1002170. doi: 10.1371/journal.pcbi.1002170. Epub 2011 Oct 6.

Abstract

Farnesylation is an important post-translational modification catalyzed by farnesyltransferase (FTase). Until recently it was believed that a C-terminal CaaX motif is required for farnesylation, but recent experiments have revealed larger substrate diversity. In this study, we propose a general structural modeling scheme to account for peptide binding specificity and recapitulate the experimentally derived selectivity profile of FTase in vitro. In addition to highly accurate recovery of known FTase targets, we also identify a range of novel potential targets in the human genome, including a new substrate class with an acidic C-terminal residue (CxxD/E). In vitro experiments verified farnesylation of 26/29 tested peptides, including both novel human targets, as well as peptides predicted to tightly bind FTase. This study extends the putative range of biological farnesylation substrates. Moreover, it suggests that the ability of a peptide to bind FTase is a main determinant for the farnesylation reaction. Finally, simple adaptation of our approach can contribute to more accurate and complete elucidation of peptide-mediated interactions and modifications in the cell.

摘要

法呢基化是由法尼基转移酶(FTase)催化的一种重要的翻译后修饰。直到最近,人们还认为 C 末端 CaaX 基序是法尼基化所必需的,但最近的实验揭示了更大的底物多样性。在这项研究中,我们提出了一种通用的结构建模方案,以解释肽结合特异性,并在体外重现 FTase 的实验衍生的选择性特征。除了高度准确地恢复已知的 FTase 靶标外,我们还在人类基因组中鉴定了一系列新的潜在靶标,包括具有酸性 C 末端残基(CxxD/E)的新底物类。体外实验验证了 26/29 种测试肽的法尼基化,包括新的人类靶标以及预测与 FTase 紧密结合的肽。这项研究扩展了生物法尼基化底物的假定范围。此外,它表明肽结合 FTase 的能力是法尼基化反应的主要决定因素。最后,我们方法的简单改编可以有助于更准确和完整地阐明细胞中肽介导的相互作用和修饰。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0e4/3188499/2347d35d04ee/pcbi.1002170.g001.jpg

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