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Molecular and Functional Analysis of Heparan sulfate Proteoglycan-Ryudocan.

Molecular and Functional Analysis of Heparan sulfate Proteoglycan-Ryudocan.
硫酸乙酰肝素蛋白聚糖-Ryudocan 的分子和功能分析。
批准号:
08671224
负责人:
KOJIMA Tetsuhito
金额:
$1.6万
依托单位:
依托单位国家:
日本
项目类别:
Grant-in-Aid for Scientific Research (C)
财政年份:
1996
资助国家:
日本
项目状态:
已结题
起止时间:
1996 至 1997

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中文摘要
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英文摘要
Ryudocan, a ubiquitous heparan sulfate proteoglycan, is a member of the syndecan family of cell surface proteoglycans. The full-length cDNA encoding the murine ryudocan core protein has now been cloned and sequenced. The deduced primary structure of mouse ryudocan, including the three glycosaminoglycan attachment sites in the extracellular domain as well as the transmembrane and cytoplasmic regions, is highly similar to those of the rat, human, and chicken proteins. Northern analysis detected a 2.7-kb transcript in all mouse tissues examined, with the highest concentrations apparent in liver, kidney, and lung. The mouse ryudocan gene was shown to span approximately 19.7 kb of genomic DNA and to contain five exons, with an intron-exon organization identical to that of the human gene. The promoter region of the mouse gene contains various cis-acting elements, including a TATA-like box and GC box as well as potential binding sites for the transcription factors NF-IL6, MyoD,GATA,C/EBP,AP-2, NF-kB,AP-1, and Sp1. Transient transfection experiments with a construct containing the 690 bp upstream of the transcription start site fused to a luciferase reporter gene showed functional promoter activity. Deletion analysis suggested that the proximal promoter region including the TATA-like box, GC box, and other Sp1 binding sites was required for full transcriptional activity. These findings will be useful for the study of ryudocan gene regulation and the generation of mice with targeted disruption of the gene.
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A.Katsumi,T.Kojima,et al.: "Protein C Nagoya,an Elongated Mutant of Protein C,Is Retained Within the Endoplasmic Reticulum and Is Associated With GRP78 and GRP94." Blood. 87(10). 4164-4175 (1996)
A.Katsumi、T.Kojima 等人:“蛋白质 C Nagoya 是蛋白质 C 的延长突变体,保留在内质网内并与 GRP78 和 GRP94 相关。”
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通讯作者:
T.Yamazaki, A.Katsumi, T.Kojima, et al.: "Molecular Basis of a Hereditary Type I Protein S Deficiency Caused By a Substitution of Cys for Arg474." Blood. 87(11). 4643-4650 (1996)
T.Yamazaki、A.Katsumi、T.Kojima 等人:“用 Cys 替代 Arg474 引起的遗传性 I 型蛋白 S 缺乏症的分子基础”。
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通讯作者:
Y.Okamoto,T.Kojima,et al.: "A Novel Nonsense Mutation Associated with an Exon Skipping in a Patient with Protein S Deficiency Type I" Thromb.Haemost.75(6). 877-882 (1996)
Y.Okamoto、T.Kojima 等人:“与 I 型蛋白 S 缺乏症患者的外显子跳跃相关的新型无义突变”Thromb.Haemost.75(6)。
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通讯作者:
S.Tsuzuki, T.Kojima, A.Katsumi, et al.: "Morecular Cloning,Genomic Organization,Promoter Activity,and Tissue-Specific Expression of the Mouse Ryudocan Gene." J.Biochem.122. 17-24 (1997)
S.Tsuzuki、T.Kojima、A.Katsumi 等人:“小鼠 Ryudocan 基因的细胞克隆、基因组组织、启动子活性和组织特异性表达”。
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通讯作者:
15
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    • 项目类别:
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