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鉴定一种在釉质成熟过程中负责牙釉蛋白完全降解的新型蛋白酶(釉质蛋白酶-I)。

Identification of a novel proteinase (ameloprotease-I) responsible for the complete degradation of amelogenin during enamel maturation.

作者信息

Moradian-Oldak J, Leung W, Simmer J P, Zeichner-David M, Fincham A G

机构信息

Center for Craniofacial Molecular Biology, School of Dentistry, University of Southern California, Los Angeles 90033, USA.

出版信息

Biochem J. 1996 Sep 15;318 ( Pt 3)(Pt 3):1015-21. doi: 10.1042/bj3181015.

Abstract

During enamel formation the proteins of the extracellular matrix, particularly amelogenins, are removed prior to maturation. In order to investigate this process and to improve our understanding of the function of proteinases during enamel maturation, proteinase fractions were isolated from developing pig enamel and assayed for proteolytic activity in vitro. A recombinant murine amelogenin, M179, was used as a substrate. Two major groups of enamel proteinases were defined as high-molecular-mass ['high-molecular-weight' in Moradian-Oldak, Simmer, Sarte, Zeichner-David and Fincham (1994) Arch. Oral Biol.39, 647-656] and low-molecular-mass proteinases. Here we report the characterization of one of the proteinases present in the low-molecular-mass group. We demonstrate that this proteinase is a serine proteinase capable of degradation of M179 following cleavage of the tyrosine-rich amelogenin polypeptide from the N-terminal region. A partial N-terminal sequence of the proteinase was obtained (LPHVPHRIPPGYGRPXTXNEEGXNPYFXFFXXHG). An anti-peptide antibody directed against a synthetic peptide corresponding to the first 14 amino acids of the above sequence was produced. The presence of the proteinase in the acetic acid extract was confirmed by Western blotting. Searching using the amino acid sequence determined in this study showed it to be also present in the 32 kDa and 89 kDa enamelin proteins reported by Fukae, Tanabe, Murakami and Tohi [(1996) Adv. Dent. Res., in the press]. We therefore identify the 32 kDa enamelin as an enamel proteinase ('ameloprotease-I') which is responsible for amelogenin degradation in maturing enamel. We propose that the 89 kDa enamelin is a precursor of ameloprotease-I, the first enamel protein for which a function has been defined.

摘要

在釉质形成过程中,细胞外基质蛋白,尤其是釉原蛋白,在成熟之前会被去除。为了研究这一过程并增进我们对釉质成熟过程中蛋白酶功能的理解,从发育中的猪釉质中分离出蛋白酶组分,并在体外测定其蛋白水解活性。使用重组小鼠釉原蛋白M179作为底物。釉质蛋白酶主要分为两大类,即高分子质量蛋白酶(在Moradian-Oldak、Simmer、Sarte、Zeichner-David和Fincham(1994年)的《口腔生物学杂志》第39卷,647 - 656页中为“高分子量”)和低分子质量蛋白酶。在此,我们报告低分子质量组中一种蛋白酶的特性。我们证明这种蛋白酶是一种丝氨酸蛋白酶,能够在从N端区域切割富含酪氨酸的釉原蛋白多肽后降解M179。获得了该蛋白酶的部分N端序列(LPHVPHRIPPGYGRPXTXNEEGXNPYFXFFXXHG)。制备了一种抗肽抗体,该抗体针对与上述序列前14个氨基酸对应的合成肽。通过蛋白质印迹法证实了醋酸提取物中存在该蛋白酶。使用本研究确定的氨基酸序列进行搜索表明,它也存在于Fukae、Tanabe、Murakami和Tohi(1996年,《牙科研究进展》,即将发表)报道的32 kDa和89 kDa釉蛋白中。因此,我们确定32 kDa釉蛋白为一种釉质蛋白酶(“釉质蛋白酶-I”),它负责成熟釉质中釉原蛋白的降解。我们提出89 kDa釉蛋白是釉质蛋白酶-I的前体,这是首个已确定功能的釉质蛋白。

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本文引用的文献

6
Detection of monodisperse aggregates of a recombinant amelogenin by dynamic light scattering.
Biopolymers. 1994 Oct;34(10):1339-47. doi: 10.1002/bip.360341006.
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Carbohydrate moieties of porcine 32 kDa enamelin.猪32 kDa釉蛋白的碳水化合物部分
Calcif Tissue Int. 1995 Apr;56(4):323-30. doi: 10.1007/BF00318054.
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Recent advances in amelogenin biochemistry.
Connect Tissue Res. 1995;32(1-4):119-24. doi: 10.3109/03008209509013713.

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