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Building and Breaking Bonds via a Compact S-propargyl-cysteine to Chemically Control Enzymes and Modify Proteins

机译:通过紧凑的S-炔丙基-半胱氨酸建立和破坏键以化学控制酶和修饰蛋白质

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摘要

Analogous to reversible post-translational protein modifications, the ability to attach and subsequently remove modifications on proteins would be valuable for protein and biological research. Although bioorthogonal functionalities have been developed to conjugate or cleave protein modifications, they are introduced into proteins on separate residues and often with bulky side chains, limiting their use to one type of control and primarily protein surface. Here we achieved dual control on one residue by genetically encoding S-propargyl-cysteine (SprC), which has bioorthogonal alkyne and propargyl groups in a compact structure, permitting usage in protein interior in addition to surface. We demonstrated its incorporation at the dimer interface of glutathione transferase for in vivo crosslinking via thiol-yne click chemistry, and at the active site of human rhinovirus 3C protease for masking and then turning on enzyme activity via Pd-cleavage of SprC into Cys. In addition, we installed biotin onto EGFP via Sonogashira coupling of SprC and then tracelessly removed it via Pd cleavage. SprC is small in size, commercially available, nontoxic, and allows for bond building and breaking on a single residue. Genetically encoded SprC will be valuable for chemically controlling proteins with an essential Cys and for reversible protein modifications.
机译:类似于可逆的翻译后蛋白质修饰,附着并随后除去蛋白质修饰的能力对于蛋白质和生物学研究将是有价值的。尽管已开发出生物正交功能来缀合或切割蛋白质修饰,但它们会在单独的残基上引入蛋白质,并且通常带有庞大的侧链,从而将它们的使用限制为一种类型的控制,主要是蛋白质表面。在这里,我们通过遗传编码S-炔丙基-半胱氨酸(SprC)实现了对一个残基的双重控制,S-炔丙基-半胱氨酸在紧凑的结构中具有生物正交炔烃和炔丙基,因此除表面外还可以用于蛋白质内部。我们证明了其结合在谷胱甘肽转移酶的二聚体界面上,用于通过硫醇-炔点击化学进行体内交联,并在人类鼻病毒3C蛋白酶的活性位点进行掩盖,然后通过SprC的Pd裂解成Cys开启酶活性。此外,我们通过SprC的Sonogashira偶联将生物素安装到EGFP上,然后通过Pd裂解无痕地将其去除。 SprC体积小,可商购,无毒,可在单个残基上建立键并断裂。遗传编码的SprC对于化学控制具有必需Cys的蛋白质和可逆的蛋白质修饰将非常有价值。

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