棕榈酰化
化学
酰化
半胱氨酸
试剂
马来酰亚胺
蛋白质沉淀
化学改性
劈理(地质)
组合化学
生物化学
色谱法
有机化学
酶
高效液相色谱法
生物
古生物学
断裂(地质)
催化作用
作者
Charlotte H. Hurst,Dionne Turnbull,Fiona Plain,William Fuller,Piers A. Hemsley
出处
期刊:BioTechniques
[Future Science Ltd]
日期:2017-02-01
卷期号:62 (2): 69-75
被引量:30
摘要
S-palmitoylation (S-acylation) is emerging as an important dynamic post-translational modification of cysteine residues within proteins. Current assays for protein S-palmitoylation involve either in vivo labeling or chemical cleavage of S-palmitoyl groups to reveal a free cysteine sulfhydryl that can be subsequently labeled with an affinity handle (acyl-exchange). Assays for protein S-palmitoylation using acyl-exchange chemistry therefore require blocking of non-S-palmitoylated cysteines, typically using N-ethylmaleimide (NEM), to prevent non-specific detection. This in turn necessitates multiple precipitation-based clean-up steps to remove reagents between stages, often leading to variable sample loss, reduced signal, or protein aggregation. These combine to reduce the sensitivity, reliability, and accuracy of these assays, which also require a substantial amount of time to perform. By substituting these precipitation steps with chemical scavenging of NEM by 2,3-dimethyl-1,3-butadiene in an aqueous Diels-Alder 4+2 cyclo-addition reaction, it is possible to greatly improve sensitivity and accuracy while reducing the hands-on time and overall time required for the assay.
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