Nakaguchi T, Arakawa T, Philo J S, Wen J, Ishimoto M, Yamaguchi H
Department of Applied Biological Chemistry, College of Agriculture, Osaka Perfecture University.
J Biochem. 1997 Feb;121(2):350-4. doi: 10.1093/oxfordjournals.jbchem.a021594.
The primary structures of two subunits of an alpha-amylase inhibitor (alpha AI-2) from a wild common bean (Phaseolus vulgaris) were revealed by a comparison of the amino acid sequence previously deduced from the nucleotide sequence with the amino- and carboxyl-terminal amino acid sequences determined by conventional methods. The polypeptide molecular weight of alpha AI-2 obtained by the light-scattering technique, considered together with the sequence molecular weights revealed for the subunits, indicated that alpha AI-2 has the subunit stoichiometry of an alpha 2 beta 2 complex. These structural features were closely similar to those recently elucidated for a white kidney bean (P. vulgaris) alpha-amylase inhibitor, which is quite different in the inhibitory specificity from alpha AI-2. The post-translational processing of the precursor glycoproteins to form the tetrameric structure appeared to require an Arg residue close to the processing site. Further, the proper associations of the subunits into the tetrameric structures seemed to be strictly controlled by a few amino acids on the subunit interfaces.
通过将先前从核苷酸序列推导的氨基酸序列与通过传统方法确定的氨基末端和羧基末端氨基酸序列进行比较,揭示了来自野生普通豆(菜豆)的α-淀粉酶抑制剂(αAI-2)两个亚基的一级结构。通过光散射技术获得的αAI-2的多肽分子量,与亚基的序列分子量一起考虑,表明αAI-2具有α2β2复合物的亚基化学计量。这些结构特征与最近阐明的白芸豆(菜豆)α-淀粉酶抑制剂非常相似,后者在抑制特异性上与αAI-2有很大不同。前体糖蛋白形成四聚体结构的翻译后加工似乎需要靠近加工位点的精氨酸残基。此外,亚基正确组装成四聚体结构似乎受到亚基界面上少数氨基酸的严格控制。