Coggins J R, Hooper E A, Perham R N
Biochemistry. 1976 Jun 15;15(12):2527-33. doi: 10.1021/bi00657a006.
Two new symmetrical bis(imido esters), N,N'-bis(2-carboximidoethyl)tartarimide dimethyl ester dihydrochloride and N,N'-bis(2-carboximidomethyl)tartarimide dimethyl ester dihydrochloride, have been synthesized. Tests with the tetrameric enzyme, fructose diphosphate aldolase, show that these reagents closely resemble dimethyl suberimidate in their ability to cross-link protein subunits. However, identification of the cross-linked species, separated by sodium dodecyl sulfate polyacrylamide gel electrophoresis, is greatly facilitated since the cross-links can be broken by a simple treatment with sodium periodate. The periodate cleavage step can be introduced between the two dimensions of a diagonal gel electrophoretic separation, the contributors to a cross-linked species then moving off the diagonal formed by uncross-linked proteins and reverting to the positions in the gel that correspond with their regenerated monomeric form. When the pyruvate dehydrogenase multienzyme complex of Escherichia coli was treated with dimethyl suberimidate or N,N'-bis(2-carboximidoethyl)tartarimide dimethyl ester dihydrochloride, cross-links rapidly formed between the subunits of the transacetylase and lipoamide dehydrogenase components. On the other hand, cross-links failed to form between the subunits of the decarboxylase component themselves, or between the decarboxylase and the other two types of subunit in the complex. Cross-linking experiments with the isolated lipoamide dehydrogenase were compatible with the accepted dimeric structure of this enzyme is free solution, whereas the isolated pyruvate decarboxylase component also failed to cross-link when treated with dimethyl suberimidate in free solution. The cross-linking experiments with the intact multienzyme complex provide evidence for the existence of the lipoamide dehydrogenase dimer in the assembled enzyme and show the need to interpret such experiments with care since, from other evidence, the pyruvate decarboxylase component is known to be bound to the transacetylase "core" of the complex.
已合成了两种新的对称双(亚胺酯),即N,N'-双(2-羧基亚胺乙基)酒石酰亚胺二甲酯二盐酸盐和N,N'-双(2-羧基亚胺甲基)酒石酰亚胺二甲酯二盐酸盐。用四聚体酶果糖二磷酸醛缩酶进行的测试表明,这些试剂在交联蛋白质亚基的能力方面与辛二亚胺二甲酯非常相似。然而,通过十二烷基硫酸钠聚丙烯酰胺凝胶电泳分离交联物种的鉴定变得更加容易,因为交联可以通过用高碘酸钠进行简单处理而断裂。高碘酸盐裂解步骤可以引入对角线凝胶电泳分离的两个维度之间,然后交联物种的成分从由未交联蛋白质形成的对角线上移开,并恢复到凝胶中与其再生单体形式相对应的位置。当用辛二亚胺二甲酯或N,N'-双(2-羧基亚胺乙基)酒石酰亚胺二甲酯二盐酸盐处理大肠杆菌的丙酮酸脱氢酶多酶复合物时,转乙酰酶和硫辛酰胺脱氢酶成分的亚基之间迅速形成交联。另一方面,脱羧酶成分自身的亚基之间,或脱羧酶与复合物中其他两种类型的亚基之间未能形成交联。用分离的硫辛酰胺脱氢酶进行的交联实验与该酶在游离溶液中公认的二聚体结构相符,而分离的丙酮酸脱羧酶成分在游离溶液中用辛二亚胺二甲酯处理时也未能交联。对完整多酶复合物进行的交联实验为组装好的酶中硫辛酰胺脱氢酶二聚体的存在提供了证据,并表明需要谨慎解释此类实验,因为从其他证据可知,丙酮酸脱羧酶成分已知与复合物的转乙酰酶“核心”结合。