Schlesinger D H, Hay D I
Int J Pept Protein Res. 1986 Apr;27(4):373-9. doi: 10.1111/j.1399-3011.1986.tb01030.x.
Human salivary secretions contain many proteins in which proline forms an unusually large fraction of the amino-acid residues present, typically from 20% to over 40%. These proteins are also unusually rich in glycine and glutamine, generally account for over half the total protein in saliva, and include acidic, basic and glycosylated molecules. The functions of most of these are not clearly defined. One group, however, the acidic proline-rich phosphoproteins (PRP), have been shown to be potent inhibitors of secondary precipitation (crystal growth) of calcium phosphate salts. Acting together with a salivary protein inhibitor of primary precipitation of calcium phosphates, statherin, the PRP stabilize saliva which is supersaturated with respect to the calcium phosphate salts which form dental enamel. These inhibitory activities act to provide a protective, reparative, but stable environment for dental enamel, which is important for maintaining the health of the teeth. The PRP are a complex group of phosphoproteins which include four major and at least eight minor members. The primary structures of three of the major proteins have been determined. These are PRP-1, also designated Protein-C, PRP-3, also designated Protein-A (17), and PRP-4. The designations PRP-1,-2,-3 and -4 will be used here. The purpose of this paper is to report the complete primary structure of PRP-2 as a further step towards establishing the structural basis of the biological activity of the PRP, and clarifying the genetic and biosynthetic relationships of these closely related proteins.
人类唾液分泌物含有许多蛋白质,其中脯氨酸在所含氨基酸残基中所占比例异常大,通常为20%至40%以上。这些蛋白质在甘氨酸和谷氨酰胺方面也异常丰富,一般占唾液总蛋白的一半以上,包括酸性、碱性和糖基化分子。其中大多数蛋白质的功能尚未明确界定。然而,有一类,即富含脯氨酸的酸性磷蛋白(PRP),已被证明是磷酸钙盐二次沉淀(晶体生长)的有效抑制剂。PRP与唾液中磷酸钙初级沉淀的蛋白质抑制剂——组蛋白一起作用,稳定相对于形成牙釉质的磷酸钙盐而言过饱和的唾液。这些抑制活性为牙釉质提供了一个保护性、修复性但稳定的环境,这对维持牙齿健康很重要。PRP是一组复杂的磷蛋白,包括四个主要成员和至少八个次要成员。已确定了其中三种主要蛋白质的一级结构。它们是PRP-1,也称为C蛋白;PRP-3,也称为A蛋白(17);以及PRP-4。本文将使用PRP-1、-2、-3和-4的名称。本文的目的是报告PRP-2的完整一级结构,这是朝着建立PRP生物活性的结构基础以及阐明这些密切相关蛋白质的遗传和生物合成关系迈出的又一步。