炔修饰类异戊二烯类似物对戊烯酰化蛋白的代谢标记

Q3 Biochemistry, Genetics and Molecular Biology
Kiall F. Suazo, Alexander K. Hurben, Kevin Liu, Feng Xu, Pa Thao, Ch. Sudheer, Ling Li, Mark D. Distefano
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引用次数: 15

摘要

蛋白质戊酰化涉及到一个法尼基或香叶基基团连接到位于蛋白质c端附近的半胱氨酸残基上,通过一个特定的戊酰化基序识别,并导致硫醚键的形成。为了鉴定假定的烯丙基化蛋白并研究其表达水平的变化,代谢标记和随后的生物正交标记已成为首选的方法之一。在该策略中,将具有生物正交功能的用于翻译后修饰的生物合成前体的合成类似物添加到生长培养基中,从中进入细胞并融入蛋白质。随后,细胞被裂解,携带类似物的蛋白质然后使用选择性化学试剂进行共价修饰,这些化学试剂通过生物正交过程发生反应,允许各种探针用于可视化或富集,以供后续分析。在这里,我们描述了几种不同的类异戊二烯类似物的合成方案,并描述了它们如何代谢结合到哺乳动物细胞中,以及如何通过凝胶内荧光分析可视化地结合到戊烯酰化蛋白中。©2018 by John Wiley &儿子,Inc。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Metabolic Labeling of Prenylated Proteins Using Alkyne-Modified Isoprenoid Analogues

Metabolic Labeling of Prenylated Proteins Using Alkyne-Modified Isoprenoid Analogues

Metabolic Labeling of Prenylated Proteins Using Alkyne-Modified Isoprenoid Analogues

Metabolic Labeling of Prenylated Proteins Using Alkyne-Modified Isoprenoid Analogues

Protein prenylation involves the attachment of a farnesyl or geranylgeranyl group onto a cysteine residue located near the C-terminus of a protein, recognized via a specific prenylation motif, and results in the formation of a thioether bond. To identify putative prenylated proteins and investigate changes in their levels of expression, metabolic labeling and subsequent bioorthogonal labeling has become one of the methods of choice. In that strategy, synthetic analogues of biosynthetic precursors for post-translational modification bearing bioorthogonal functionality are added to the growth medium from which they enter cells and become incorporated into proteins. Subsequently, the cells are lysed and proteins bearing the analogues are then covalently modified using selective chemical reagents that react via bioorthogonal processes, allowing a variety of probes for visualization or enrichment to be attached for subsequent analysis. Here, we describe protocols for synthesizing several different isoprenoid analogues and describe how they are metabolically incorporated into mammalian cells, and the incorporation into prenylated proteins visualized via in-gel fluorescence analysis. © 2018 by John Wiley & Sons, Inc.

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Current protocols in chemical biology
Current protocols in chemical biology Biochemistry, Genetics and Molecular Biology-Biophysics
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