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编码牙本质涎蛋白和牙本质磷蛋白的小鼠牙本质涎磷蛋白(Dspp)基因的基因组组织、染色体定位及启动子分析。

Genomic organization, chromosomal mapping, and promoter analysis of the mouse dentin sialophosphoprotein (Dspp) gene, which codes for both dentin sialoprotein and dentin phosphoprotein.

作者信息

Feng J Q, Luan X, Wallace J, Jing D, Ohshima T, Kulkarni A B, D'Souza R N, Kozak C A, MacDougall M

机构信息

University of Texas Health Science Center at San Antonio, Dental School, San Antonio, Texas 78284-7888, USA.

出版信息

J Biol Chem. 1998 Apr 17;273(16):9457-64. doi: 10.1074/jbc.273.16.9457.

Abstract

Our laboratory has reported that two major noncollagenous dentin proteins, dentin sialoprotein and dentin phosphoprotein, are specific cleavage products of a larger precursor protein termed dentin sialophosphoprotein (MacDougall, M., Simmons, D., Luan, X., Nydegger, J., Feng, J. Q., and Gu, T. T. (1997) J. Biol. Chem. 272:835-842). To confirm our single gene hypothesis and initiate in vitro promoter studies, we have characterized the structural organization of the mouse dentin sialophosphoprotein gene. This gene has a transcription unit of approximately 9.4 kilobase pairs and is organized into 5 exons and 4 introns. Exon 1 contains a noncoding 5' sequence, and exon 2 contains the transcriptional start site, signal peptide, and first two amino acids of the NH2 terminus. Exons 3 and 4 contain coding information for 29 and 314 amino acids, respectively. The remainder of the coding information and the untranslated 3' region are contained in exon 5. Chromosomal mapping localized the gene to mouse chromosome 5q21 in close proximity to other dentin/bone matrix genes. Computer analysis of the promoter proximal 1.6-kilobase pair sequence revealed a number of potentially important cis-regulatory sequences; these include the recognition elements of AP-1, AP-2, Msx-1, serum response elements, SP-1, and TCF-1. In vitro studies showed that the DSPP promoter is active in an odontoblast cell line, MO6-G3, with basal activity mapped to -95 bp. Two potential enhancer and suppresser elements were identified in the regions between -1447 and -791 bp and -791 and -95 bp, respectively. The structural organization of the dentin sialophosphoprotein gene confirms our finding that both dentin sialoprotein and dentin phosphoprotein are encoded by a single gene with a continuous open reading frame.

摘要

我们实验室曾报道,两种主要的非胶原蛋白牙本质蛋白,即牙本质涎蛋白和牙本质磷蛋白,是一种名为牙本质涎磷蛋白的更大前体蛋白的特异性裂解产物(MacDougall, M., Simmons, D., Luan, X., Nydegger, J., Feng, J. Q., and Gu, T. T. (1997) J. Biol. Chem. 272:835 - 842)。为了证实我们的单基因假说并启动体外启动子研究,我们对小鼠牙本质涎磷蛋白基因的结构组织进行了表征。该基因有一个约9.4千碱基对的转录单位,由5个外显子和4个内含子组成。外显子1包含一个非编码5'序列,外显子2包含转录起始位点、信号肽和NH2末端的前两个氨基酸。外显子3和4分别包含29个和314个氨基酸的编码信息。其余的编码信息和非翻译3'区域包含在外显子5中。染色体定位将该基因定位于小鼠5号染色体q21,与其他牙本质/骨基质基因紧密相邻。对启动子近端1.6千碱基对序列的计算机分析揭示了一些潜在重要的顺式调控序列;这些包括AP - 1、AP - 2、Msx - 1、血清反应元件、SP - 1和TCF - 1的识别元件。体外研究表明,DSPP启动子在成牙本质细胞系MO6 - G3中具有活性,基础活性定位于 - 95 bp。在 - 1447至 - 791 bp和 - 791至 - 95 bp区域分别鉴定出两个潜在的增强子和抑制子元件。牙本质涎磷蛋白基因的结构组织证实了我们的发现,即牙本质涎蛋白和牙本质磷蛋白均由一个具有连续开放阅读框的单基因编码。

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