Birk Y
Int J Pept Protein Res. 1985 Feb;25(2):113-31. doi: 10.1111/j.1399-3011.1985.tb02155.x.
Four decades of studies on the isolation, characterization, properties, structure, function and possible uses of the Bowman-Birk trypsin- and chymotrypsin-inhibitor from soybeans are reviewed. Starting from Bowman's Acetone Insoluble factor, designated Ai, AA and SBTIAA, the Bowman-Birk inhibitor (BBI) was found to be a protein molecule consisting of a chain of 71 amino acids cross linked by 7 disulfide bonds, with a tendency to self-associate. BBI possesses two independent sites of inhibition, one at Lys 16-Ser 17 against trypsin and the other at Leu 43-Ser 44 against chymotrypsin. It forms a 1:1 complex with either trypsin or chymotrypsin and a ternary complex with both enzymes. Ingestion of BBI by rats, chicks or quails affects the size and protein biosynthesis of the pancreas. Establishment of the full covalent structure of BBI revealed a high homology in the sequences around the two inhibitory sites, suggesting evolutionary gene duplication from a single-headed ancestral inhibitor. Scission of BBI by CNBr followed by pepsin results in two active fragments, one that inhibits trypsin and the other, chymotrypsin. Replacements and substitutions in the reactive sites result in changes in inhibitory activity and in specificity of inhibition. Conformation studies, labeling of BBI with a photoreactive reagent, chemical synthesis of cyclic peptides that include inhibitory sites, in vitro synthesis of BBI, and species specificity regarding the inhibited enzymes are described. The significance of BBI as a prototype of a family of inhibitors present in all legume seeds is discussed.
本文综述了四十年来对大豆中鲍曼-伯克胰蛋白酶和糜蛋白酶抑制剂的分离、表征、性质、结构、功能及可能用途的研究。从鲍曼的丙酮不溶因子(命名为Ai、AA和SBTIAA)开始,发现鲍曼-伯克抑制剂(BBI)是一种由71个氨基酸链组成的蛋白质分子,通过7个二硫键交联,有自我缔合的倾向。BBI具有两个独立的抑制位点,一个在Lys 16-Ser 17处针对胰蛋白酶,另一个在Leu 43-Ser 44处针对糜蛋白酶。它与胰蛋白酶或糜蛋白酶形成1:1复合物,与两种酶形成三元复合物。大鼠、小鸡或鹌鹑摄入BBI会影响胰腺的大小和蛋白质生物合成。BBI完整共价结构的确定揭示了两个抑制位点周围序列的高度同源性,表明它是由一个单头祖先抑制剂进化而来的基因复制产物。用溴化氰裂解BBI后再用胃蛋白酶处理,会产生两个活性片段,一个抑制胰蛋白酶,另一个抑制糜蛋白酶。活性位点的替换和取代会导致抑制活性和抑制特异性的改变。文中还描述了构象研究、用光反应试剂标记BBI、包含抑制位点的环肽的化学合成、BBI的体外合成以及关于被抑制酶的物种特异性。讨论了BBI作为所有豆科植物种子中存在的一类抑制剂原型的意义。