大鼠门牙本质的主要非胶原蛋白磷酸蛋白。

M T Dimuzio, A Veis
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引用次数: 68

摘要

新鲜切除的大鼠门牙立即清洗,并在0.5 M pH 7.5的乙二胺四乙酸中脱矿。提取液经膜透析去除钙、可扩散磷酸盐和低分子量多肽成分,截留分子量为3500。在pH 8.2的deae -纤维素层析层析中,提取液被分解成至少7种蛋白质组分。测定了各蛋白质组分的组成。两种富含丝氨酸、磷和天冬氨酸的蛋白质不同于任何属于牙釉质的蛋白质,因此被认为是门牙本质的组成部分。这些是牙齿中主要的非胶原成分。在3.0 M盐酸胍中,Sepharose CL-6B凝胶过滤柱解离纯化。通过这种方法,这两种磷酸化蛋白的摩尔瓦特分别为71,000和65,000,极性氨基酸的含量不同,尽管它们都含有大于70%的丝氨酸(或磷丝氨酸)和天冬氨酸残基。建议用“磷蛋白”来描述这些牙本质蛋白。原始脱矿提取后的不溶性胶原基质用溴化氰降解。几种非胶原蛋白成分以及典型的胶原衍生肽被释放出来。两个胶原蛋白复合肽也被分离出来,证明在牛牙本质中,牙本质磷蛋白可能与矿化基质中的胶原蛋白直接共价相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phosphophoryns-major noncollagenous proteins of rat incisor dentin.

Freshly excised rat incisors were immediately cleaned and demineralized in 0.5 M ethylene diaminetetracetic acid at pH 7.5. The extracts were freed of calcium, diffusible phosphate and low molecular weight polypeptide components by dialysis in membranes with cut-off of 3500 molecular weight. The extract was resolved into at least 7 protein components by chromatography on DEAE-cellulose at pH 8.2. The composition of each protein component was determined. Two proteins, rich in serine, phosphorous and aspartic acid were unlike any proteins attributed to enamel, and hence were considered to be components of incisor dentin. These were the principal non-collagenous components of the teeth. Further purification was carried out under dissociative conditions on Sepharose CL-6B gel filtration columns in 3.0 M guanidine hydrochloride. The two phosphoproteins have mol wts, by this method, of 71,000 and 65,000, respectively, and differ in content of apolar amino acids, although both contain greater than 70 residue % of seryl (or phosphoseryl) and aspartyl residues. The name "phosphophoryns" is proposed to describe these dentinal proteins. The insoluble collagenous matrix remaining after the original demineralizing extraction was degraded with cyanogen bromide. Several non-collagenous protein components were released as well as the typical collagen derived peptides. Two collagen phosphoprotein complex peptides were also isolated, demonstrating as in bovine dentin, the probable direct covalent interaction of a dentin phosphoprotein with hte collagen of the mineralized matrix.

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