School of Chemistry and Chemical Engineering, South China University of Technology, Guangzhou, 510640, P. R. China.
Angew Chem Int Ed Engl. 2022 Apr 4;61(15):e202115377. doi: 10.1002/anie.202115377. Epub 2022 Feb 16.
The hydrazinolysis of S-cyanylated peptide provides an alternative way to afford protein α-hydrazide, a key reagent used in native chemical ligation (NCL), without the aid of any inteins or enzymes. The currently used non-selective S-cyanylation, however, allows no other cysteine in the protein besides the one at the cleavage site. Herein, we report a regioselective S-cyanylation and hydrazinolysis strategy achieved via the fusion of a tetracysteine tag to the C-terminal of the protein of interest. We term it tetracysteine enabled protein ligation (TCEPL). While highly selective, the strategy is applicable for proteins expressed as inclusion bodies, and this was showcased by the efficient semi-synthesis of an iron-sulfur protein rubredoxin and the catalytic and hinge domains of matrix metalloprotease-14 (MMP-14) containing 207 amino acid residues. Furthermore, the TCEPL strategy was exploited for protein C-terminal labeling with amino reagents bearing a variety of functional groups, demonstrating its versatility and generality.
S-氰基化肽的肼解为提供了一种替代方法来获得蛋白质α-酰肼,这是用于天然化学连接(NCL)的关键试剂,而无需任何内含子或酶的帮助。然而,目前使用的非选择性 S-氰基化只允许除切割位点处的另一个半胱氨酸外的蛋白质中的其他半胱氨酸。在此,我们报告了一种通过将四半胱氨酸标签融合到靶蛋白的 C 末端来实现的区域选择性 S-氰基化和肼解策略。我们称之为四半胱氨酸增强蛋白连接(TCEPL)。虽然具有高度选择性,但该策略适用于作为包涵体表达的蛋白质,这通过铁硫蛋白 rubredoxin 和含有 207 个氨基酸残基的基质金属蛋白酶-14(MMP-14)的催化和铰链结构域的有效半合成得到了展示。此外,TCEPL 策略还用于用带有各种官能团的氨基试剂对蛋白质 C 末端进行标记,证明了其多功能性和通用性。