Tan-Wilson A L, Wilson K A
Adv Exp Med Biol. 1986;199:391-411. doi: 10.1007/978-1-4757-0022-0_22.
Trypsin inhibitors contribute to the antinutritional component of raw soybean meal by inhibiting vertebrate pancreatic serine proteinases in the small intestine, resulting in a range of deleterious physiological effects in the animal. The variation in the nutritional quality of soybean cultivars stems partly from wide-ranging levels of trypsin inhibitor, and from varying proportions of trypsin inhibitors of two classes--the Kunitz and the Bowman-Birk inhibitor classes. The latter class is better able to survive heat processing and digestion in the stomach. Some variation in cultivars also arises from the array of isoinhibitors present in the seed. The three Kunitz isoinhibitors, Ti(a), Ti(b) and Ti(c) differ by as much as 1000-fold in their interaction with bovine trypsin. The Bowman-Birk isoinhibitors differ not only in their extent of interaction with trypsin, but in their spectrum of inhibition of the other pancreatic enzymes, chymotrypsin and elastase. In this chapter, we look at twenty-two Bowman-Birk inhibitors from ten soybean cultivars and find at least twelve which are different enough in amino acid composition and/or inhibitor activity to be distinct protein species. Of these, three pairs are related by proteolytic digestion. Quite ironically, the Bowman-Birk inhibitors, and to some extent the Kunitz inhibitors, contribute to the nutritional quality of soybeans by virtue of their high cystine content which supplements the low or negligible amounts of sulfur-containing amino acids in the storage proteins that comprise the bulk of the protein reserve in the seed.
胰蛋白酶抑制剂通过抑制脊椎动物小肠中的胰腺丝氨酸蛋白酶,成为生豆粕抗营养成分的一部分,从而在动物体内产生一系列有害的生理影响。大豆品种营养品质的差异部分源于胰蛋白酶抑制剂含量的广泛差异,以及两类胰蛋白酶抑制剂(库尼兹抑制剂和鲍曼-伯克抑制剂)比例的不同。后一类在胃中更能耐受热处理和消化。品种间的一些差异还源于种子中存在的同工抑制剂阵列。三种库尼兹同工抑制剂Ti(a)、Ti(b)和Ti(c)与牛胰蛋白酶的相互作用差异高达1000倍。鲍曼-伯克同工抑制剂不仅在与胰蛋白酶的相互作用程度上不同,而且在对其他胰腺酶(胰凝乳蛋白酶和弹性蛋白酶)的抑制谱上也不同。在本章中,我们研究了来自10个大豆品种的22种鲍曼-伯克抑制剂,发现至少有12种在氨基酸组成和/或抑制剂活性上有足够差异,可被视为不同的蛋白质种类。其中,有三对是通过蛋白水解消化相关联的。颇具讽刺意味的是,鲍曼-伯克抑制剂以及在一定程度上库尼兹抑制剂,因其高胱氨酸含量而有助于大豆的营养品质,这种高胱氨酸含量补充了种子中储存蛋白中含硫氨基酸含量低或可忽略不计的情况,而储存蛋白构成了种子中大部分的蛋白质储备。