The Texas A&M Drug Discovery Laboratory, Department of Chemistry, Texas A&M University, College Station, Texas 77843, United States.
Department of Biochemistry & Biophysics, Texas A&M University, College Station, Texas 77843, United States.
J Am Chem Soc. 2020 Apr 15;142(15):7047-7054. doi: 10.1021/jacs.0c00252. Epub 2020 Apr 2.
Proteins with a functionalized -terminus such as a -terminal thioester are key to the synthesis of larger proteins via expressed protein ligation. They are usually made by recombinant fusion to intein. Although powerful, the intein fusion approach suffers from premature hydrolysis and low compatibility with denatured conditions. To totally bypass the involvement of an enzyme for expressed protein ligation, here we showed that a cysteine in a recombinant protein was chemically activated by a small molecule cyanylating reagent at its -side amide for undergoing nucleophilic acyl substitution with amines including a number of l- and d-amino acids and hydrazine. The afforded protein hydrazides could be used further for expressed protein ligation. We demonstrated the versatility of this activated cysteine-directed protein ligation (ACPL) approach with the successful synthesis of ubiquitin conjugates, ubiquitin-like protein conjugates, histone H2A with a -terminal posttranslational modification, RNase H that actively hydrolyzed RNA, and exenatide that is a commercial therapeutic peptide. The technique, which is exceedingly simple but highly useful, expands to a great extent the synthetic capacity of protein chemistry and will therefore make a large avenue of new research possible.
具有功能化 -末端的蛋白质,如 -末端硫酯,是通过表达蛋白连接合成更大蛋白质的关键。它们通常通过与内含肽的重组融合来制备。尽管这种方法非常强大,但内含肽融合方法存在过早水解和与变性条件兼容性差的问题。为了完全避免酶在表达蛋白连接中的参与,我们在这里表明,重组蛋白中的半胱氨酸可以被小分子氰基化试剂在其 -侧酰胺上化学激活,从而与包括许多 L-和 D-氨基酸和肼在内的胺进行亲核酰取代。得到的蛋白质酰肼可进一步用于表达蛋白连接。我们通过成功合成泛素缀合物、泛素样蛋白缀合物、带有 -末端翻译后修饰的组蛋白 H2A、积极水解 RNA 的核糖核酸酶 H 和一种商业治疗肽 exenatide,证明了这种经化学激活的半胱氨酸导向的蛋白连接(ACPL)方法的多功能性。该技术非常简单但非常有用,极大地扩展了蛋白质化学的合成能力,因此将开辟新的研究途径。