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珍珠层中一类新型基质蛋白——珍珠素的互补DNA克隆及特性分析

Complementary DNA Cloning and Characterization of Pearlin, a New Class of Matrix Protein in the Nacreous Layer of Oyster Pearls.

作者信息

Miyashita T, Takagi R, Okushima M, Nakano S, Miyamoto H, Nishikawa E, Matsushiro A

机构信息

Faculty of Biology-Oriented Science and Technology, Kinki University, Uchitacho, Nagagun, Wakayama 649-6433, Japan

出版信息

Mar Biotechnol (NY). 2000 Sep;2(5):409-418. doi: 10.1007/pl00021687.

Abstract

Calcified shell layer is composed of two polymorphs of CaCO(3), aragonite or calcite, and an organic matrix. The organic matrix consists of EDTA-soluble and insoluble fractions. These fractions are thought to regulate the formation of the elaborate shell structure. After decalcification of powdered pearl with 0.3 M EDTA, an EDTA-insoluble fraction was extracted with 0.3 M EDTA/8 M urea. This extraction step enabled us to purify a new class of EDTA-insoluble protein, Pearlin, almost homogeneously. Pearlin has a molecular weight of about 15 kDa and contains a sulfated mucopolysaccharide. We cloned the complementary DNA coding for Pearlin and deduced its complete amino acid sequence. Sequence analysis reveals that Pearlin is composed of 129 amino acids with a high proportion of Gly (10.8%), Tyr (10.0%), Cys (8.5%), Asn (7.7%), Asp (7.7%), and Arg (7.7%). Northern blot analysis showed that Pearlin messenger RNA was expressed specifically in mantle epithelium. From the sequencing data, Pearlin was shown to be quite different from the fibrous protein rich in Ala and Gly. The function of this protein in biomineralization is discussed.

摘要

钙化壳层由碳酸钙的两种多晶型物(文石或方解石)和一种有机基质组成。有机基质由可溶于乙二胺四乙酸(EDTA)和不溶于EDTA的部分组成。这些部分被认为调节着精细壳结构的形成。用0.3 M EDTA对珍珠粉进行脱钙后,用0.3 M EDTA/8 M尿素提取出EDTA不溶性部分。这一提取步骤使我们能够几乎同质纯化出一类新的EDTA不溶性蛋白——珍珠蛋白。珍珠蛋白的分子量约为15 kDa,并且含有一种硫酸化的粘多糖。我们克隆了编码珍珠蛋白的互补DNA并推导了其完整的氨基酸序列。序列分析表明,珍珠蛋白由129个氨基酸组成,其中甘氨酸(Gly,10.8%)、酪氨酸(Tyr,10.0%)、半胱氨酸(Cys,8.5%)、天冬酰胺(Asn,7.7%)、天冬氨酸(Asp,7.7%)和精氨酸(Arg,7.7%)的比例较高。Northern印迹分析表明,珍珠蛋白信使核糖核酸(mRNA)在套膜上皮中特异性表达。从测序数据来看,珍珠蛋白与富含丙氨酸(Ala)和甘氨酸的纤维状蛋白有很大不同。本文讨论了该蛋白在生物矿化中的功能。

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