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Synthesis of tetrapeptide Bz-RGDS-NH2 by a combination of chemical and enzymatic methods

机译:化学和酶促方法合成四肽Bz-RGDS-NH2

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The tetrapeptide Bz-Arg-Gly-Asp-Ser-NH(2) (Bz-RGDS-NH(2)) was successfully synthesized by a combination of chemical and enzymatic methods in this study. Firstly, the precursor tripeptide Gly-Asp-Ser-NH(2) (GDS-NH(2)) was synthesized by a novel chemical method in four steps including chloroacetylation of l-aspartic acid, synthesis of chloroacetyl l-aspartic acid anhydride, the synthesis of ClCH(2)COAsp-SerOMe and ammonolysis of ClCH(2)COAsp-SerOMe. Secondly, lipase (PPL) was used to catalyze the formation of Bz-RGDS-NH(2) in aqueous water-miscible organic cosolvent systems using Bz-Arg-OEt as the acyl donor and GDS-NH(2) as the nucleophile. The optimum conditions were Bz-Arg-OEt 50 mM; GDS-NH(2) 400 mM; 10 degrees C, 0.1M phosphate buffer, pH 7.5; 60% DMF or 58% DMSO, PPL: 10 mg ml(-1) with the maximum yields of the tetrapeptide of 73.6% for DMF and 70.4% for DMSO, respectively. The secondary hydrolysis of the tetrapeptide product did not take place due to the absence of amidase activity of lipase.
机译:四肽Bz-Arg-Gly-Asp-Ser-NH(2)(Bz-RGDS-NH(2))通过化学和酶学方法的结合成功地合成了本研究。首先,通过一种新的化学方法,在四个步骤中合成了前体三肽Gly-Asp-Ser-NH(2)(GDS-NH(2)),包括四个步骤,包括L-天冬氨酸的氯乙酰化,氯乙酰基L-天冬氨酸的合成, ClCH(2)COAsp-SerOMe的合成和ClCH(2)COAsp-SerOMe的氨解。其次,使用Bz-Arg-OEt作为酰基供体和GDS-NH(2)作为亲核试剂,使用脂肪酶(PPL)催化Bz-RGDS-NH(2)在水与水混溶的有机助溶剂系统中的形成。最佳条件是Bz-Arg-OEt 50 mM; GDS-NH(2)400毫米; 10°C,0.1M磷酸盐缓冲液,pH 7.5; 60%DMF或58%DMSO,PPL:10 mg ml(-1),四肽的最大产率分别为DMF 73.6%和DMSO 70.4%。由于不存在脂肪酶的酰胺酶活性,所以四肽产物没有发生二次水解。

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