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小鼠SPR1的序列与表达模式:表达与上皮功能的相关性

Sequence and expression patterns of mouse SPR1: Correlation of expression with epithelial function.

作者信息

Kartasova T, Darwiche N, Kohno Y, Koizumi H, Osada S, Huh N, Lichti U, Steinert P M, Kuroki T

机构信息

Department of Cancer Cell Research, University of Tokyo, Showa University School of Dentistry, Japan.

出版信息

J Invest Dermatol. 1996 Feb;106(2):294-304. doi: 10.1111/1523-1747.ep12340741.

Abstract

A final event in the terminal differentiation of stratified squamous epithelia is the formation of a cornified cell envelope, which is a complex of several proteins cross-linked together by transglutaminases. One set of proteins is the family of small proline rich (SPR) proteins. In human foreskin epidermal cell envelopes, SPRs serve as cross-bridging proteins among the more abundant loricrin. In order to study further their evolution and expression, we have isolated and sequenced cDNAs encoding two mouse SPR1 proteins, SPR1a and SPR1b Comparative sequence analysis showed the preservation of the overall structure of mammalian SPR1 proteins with highly conserved termini and a central peptide domain repeated 13 (SPE1a) or seven (SPR1b) times. Tissues obtained from mouse fetal, newborn, and adult skin were tested by Northern blot analyses, in situ hybridization and immunohistochemistry using an antibody raised to a synthetic peptide corresponding to the C terminus of the SPR1a protein. Skin expression was first detected in fetal periderm in anagen hair follicles of newborn and older mice, and in the thickened epidermis of the lip and footpad, but no signal was detected in interfollicular trunk epidermis. High levels of SPR1a expression were found in epithelia from the forestomach and penis, and in benign squamous papillomas. Other epithelia expressing SPR1a include the tongue, esophagus, and vagina. Whenever detected, SPR1a positive staining was present in the spinous and granular layers. In the forestomach and papillomas, the periphery of cells in the cornified layer was also stained. Our results suggest that SPR1a participates widely in the construction of cell envelopes in cornifying epithelia characterized by either increased thickness or a requirement for extreme flexibility. Based on its likely function as a cross-bridging protein in cell envelopes, we conclude that the mechanical attributes of cell envelopes may be determined in part by the SPR1 content, in accordance with the specific function of the epithelium.

摘要

复层鳞状上皮终末分化的最后一个事件是角质化细胞包膜的形成,它是由转谷氨酰胺酶交联在一起的几种蛋白质的复合物。其中一组蛋白质是富含脯氨酸的小蛋白(SPR)家族。在人包皮表皮细胞包膜中,SPR作为含量更丰富的兜甲蛋白之间的交联蛋白。为了进一步研究它们的进化和表达,我们分离并测序了编码两种小鼠SPR1蛋白SPR1a和SPR1b的cDNA。比较序列分析表明,哺乳动物SPR1蛋白的整体结构得以保留,其末端高度保守,中央肽结构域重复13次(SPE1a)或7次(SPR1b)。使用针对与SPR1a蛋白C末端对应的合成肽产生的抗体,通过Northern印迹分析、原位杂交和免疫组织化学对从小鼠胎儿、新生和成年皮肤获得的组织进行检测。皮肤表达首先在新生和成年小鼠生长期毛囊的胎儿周皮以及嘴唇和脚垫增厚的表皮中检测到,但在毛囊间的躯干表皮中未检测到信号。在森林胃和阴茎的上皮以及良性鳞状乳头瘤中发现了高水平的SPR1a表达。其他表达SPR1a的上皮包括舌头、食道和阴道。无论何时检测到,SPR1a阳性染色都出现在棘层和颗粒层。在森林胃和乳头瘤中,角质化层细胞的周边也被染色。我们的结果表明,SPR1a广泛参与以厚度增加或需要极端柔韧性为特征的角质化上皮中细胞包膜的构建。基于其在细胞包膜中作为交联蛋白的可能功能,我们得出结论,细胞包膜的机械属性可能部分由SPR1含量决定,这与上皮的特定功能一致。

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