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一种蛋白水解抗体轻链的分子克隆

Molecular cloning of a proteolytic antibody light chain.

作者信息

Gao Q S, Sun M, Tyutyulkova S, Webster D, Rees A, Tramontano A, Massey R J, Paul S

机构信息

Department of Anesthesiology, University of Nebraska Medical Center, Omaha 68198-6830.

出版信息

J Biol Chem. 1994 Dec 23;269(51):32389-93.

PMID:7798238
Abstract

The cDNA for an antibody light chain raised by immunization against vasoactive intestinal peptide (VIP) was cloned in a bacterial expression vector, and the recombinant light chain was purified to electrophoretic homogeneity. The light chain catalyzed the hydrolysis of VIP efficiently owing to its comparatively high affinity for the substrate. In control experiments, the catalytic activity was preserved at a constant level after further chromatography of the light chain on anion-exchange and gel-filtration fast protein liquid chromatography columns, and it was removed by immunoadsorption with immobilized anti-mouse light chain antibody. The amide bond linking methylcoumarinamide (MCA) and arginine in a tripeptide unrelated in sequence to VIP was cleaved by the light chain with lower affinity and kinetic efficiency (kcat/Km). Hydrolysis of the peptidyl-MCA conjugate was inhibited competitively by the alternate substrate, VIP. The Ki and Km values for VIP were in the same range, indicating that peptide-MCA and VIP hydrolysis occurs at a common catalytic site in the light chain. Molecular modeling suggested the presence of a serine protease-like site in the light chain. This was supported by inhibition of the hydrolytic activity by serine protease inhibitors, but not by inhibitors of other classes of proteases. These observations suggest a poorly discriminatory catalytic site, with specificity for VIP arising chiefly by means of the antigen recognition function of the light chain combining site.

摘要

针对血管活性肠肽(VIP)免疫产生的抗体轻链的互补DNA(cDNA)被克隆到细菌表达载体中,重组轻链被纯化至电泳纯。由于其对底物具有相对较高的亲和力,该轻链能高效催化VIP的水解。在对照实验中,轻链经阴离子交换和凝胶过滤快速蛋白质液相色谱柱进一步层析后,催化活性保持在恒定水平,而用固定化抗小鼠轻链抗体进行免疫吸附可去除该活性。轻链对与VIP序列无关的三肽中连接甲基香豆素酰胺(MCA)和精氨酸的酰胺键的切割亲和力较低且动力学效率(kcat/Km)也较低。肽基-MCA缀合物的水解受到替代底物VIP的竞争性抑制。VIP的Ki和Km值在同一范围内,表明肽-MCA和VIP的水解发生在轻链的共同催化位点。分子建模表明轻链中存在一个丝氨酸蛋白酶样位点。丝氨酸蛋白酶抑制剂可抑制水解活性,而其他类别的蛋白酶抑制剂则不能,这支持了上述结论。这些观察结果表明存在一个区分性较差的催化位点,对VIP的特异性主要通过轻链结合位点的抗原识别功能产生。

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