Anikina O M, Lysogorskaya E N, Oksemoĭt E S, Lozinskiĭ V I, Filippova I Iu
Bioorg Khim. 2008 May-Jun;34(3):365-70. doi: 10.1134/s1068162008030138.
Subtilisin Carlsberg (SK) was shown to catalyze the solid phase segment coupling of peptides in complex with sodium dodecyl sulfate (SDS) in an organic medium on Aminosilochrom and polyvinyl alcohol (PVA) cryogel activated with glutaraldehyde or divinylsulfone. Diamines of different lengths with a general formula NH2-(CH2)n-NH2 (n = 2, 4, and 6) were used as spacers between the PVA cryogel and the peptide. A model reaction of enzymatic attachment of the Dnp-Ala-Ala-Leu-OMe tripeptide to the PVA cryogel was carried out by treatment with the SDS-SK complex in a mixture of anhydrous ethanol and DMSO (7: 3, v/v) using a tenfold excess of the carboxyl component. The molar enzyme-substrate ratio was 1 : 88. The effect of the method of matrix activation, length of a spacer, and reaction time on the coupling efficiency was studied. Hexamethylenediamine was found to be the most effective spacer for the enzymatic coupling on the PVA cryogel activated with glutaraldehyde (the reaction proceeded with the highest yield of 60%). The reaction efficiency was considerably lower in the case of ethylenediamine and tetramethylenediamine (10 and 15%, respectively). The best results were obtained on the PVA cryogel activated by divinylsulfone with hexamethylenediamine as a spacer. A two-step condensation of tripeptides was carried out on this supportsupport. The second step of condensation was shown to proceed better (in 85% yield) in comparison with the first step (37% yield).
已证明,在有机介质中,于经戊二醛或二乙烯砜活化的氨基硅铬和聚乙烯醇(PVA)冷冻凝胶上,嗜热栖热菌蛋白酶(SK)能催化与十二烷基硫酸钠(SDS)复合的肽的固相聚段偶联。通式为NH2-(CH2)n-NH2(n = 2、4和6)的不同长度的二胺用作PVA冷冻凝胶与肽之间的间隔物。通过用SDS-SK复合物在无水乙醇和二甲基亚砜(7:3,v/v)的混合物中处理,使用十倍过量的羧基组分,进行Dnp-Ala-Ala-Leu-OMe三肽与PVA冷冻凝胶的酶促连接的模型反应。酶与底物的摩尔比为1:88。研究了基质活化方法、间隔物长度和反应时间对偶联效率的影响。发现六亚甲基二胺是在经戊二醛活化的PVA冷冻凝胶上进行酶促偶联的最有效间隔物(反应以60%的最高产率进行)。在乙二胺和四亚甲基二胺的情况下,反应效率显著较低(分别为10%和15%)。以六亚甲基二胺为间隔物,在经二乙烯砜活化的PVA冷冻凝胶上获得了最佳结果。在此载体上进行了三肽的两步缩合反应。结果表明,缩合反应的第二步比第一步进行得更好(产率为85%,而第一步产率为37%)。