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三叶因子基因家族是即刻早期基因的协同表达基因:表皮生长因子受体和丝裂原活化蛋白激酶依赖性相互调节。

The trefoil gene family are coordinately expressed immediate-early genes: EGF receptor- and MAP kinase-dependent interregulation.

作者信息

Taupin D, Wu D C, Jeon W K, Devaney K, Wang T C, Podolsky D K

机构信息

Gastrointestinal Unit and Center for the Study of Inflammatory Bowel Disease, Massachusetts General Hospital and Harvard Medical School, Boston, Massachusetts 02114, USA.

出版信息

J Clin Invest. 1999 May;103(9):R31-8. doi: 10.1172/JCI3304.

DOI:10.1172/JCI3304
PMID:10225980
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC408349/
Abstract

The trefoil gene family of mucus cell-secreted proteins is a critical mediator of gastrointestinal mucosal restitution. Transcription of trefoil genes is induced during mucosal repair, but the regulatory mechanisms involved are unknown. Mice deficient in the intestine-specific peptide intestinal trefoil factor (ITF), in which colonic restitution is lethally impaired, showed reduced expression of the gastric trefoil genes SP and pS2, suggesting that trefoil peptides may individually regulate transcription of the entire family. In gastric cell lines, the trefoils were shown to act in a manner suggestive of immediate-early genes capable of auto- and cross-induction through cis-acting regulatory regions. Trefoil-mediated transcriptional regulation required activation of the Ras/MEK/MAP kinase signal transduction pathway. EGF receptor (EGF-R) activation was also necessary for trefoil auto- and cross-induction, and both spasmolytic polypeptide (SP) and ITF stimulation of gastric cell lines led to phosphorylation of EGF-R. Nevertheless, ITF and ITF-thioredoxin cell surface binding at 4 degrees C colocalized not with EGF-R, but with CD71, which is found in clathrin-coated pits, suggesting that integration of trefoil peptide responses may occur after internalization. As EGF-R expression is itself strongly induced after mucosal damage, the trefoil/EGF-R relationship may be pivotal in the generation and maintenance of the mucosal repair phenotype.

摘要

黏液细胞分泌蛋白的三叶因子基因家族是胃肠道黏膜修复的关键介质。三叶因子基因的转录在黏膜修复过程中被诱导,但相关的调控机制尚不清楚。缺乏肠道特异性肽肠三叶因子(ITF)的小鼠,其结肠修复严重受损,胃三叶因子基因SP和pS2的表达降低,这表明三叶肽可能单独调节整个家族的转录。在胃细胞系中,三叶因子的作用方式提示它们可能是能够通过顺式作用调控区域进行自诱导和交叉诱导的即早基因。三叶因子介导的转录调控需要激活Ras/MEK/MAP激酶信号转导途径。表皮生长因子受体(EGF-R)的激活对于三叶因子的自诱导和交叉诱导也是必需的,胃细胞系中解痉多肽(SP)和ITF的刺激均导致EGF-R磷酸化。然而,4℃时ITF和ITF-硫氧还蛋白在细胞表面的结合并非与EGF-R共定位,而是与存在于网格蛋白包被小窝中的CD71共定位,这表明三叶肽反应的整合可能在内化后发生。由于EGF-R的表达本身在黏膜损伤后会强烈诱导,三叶因子/EGF-R的关系可能在黏膜修复表型的产生和维持中起关键作用。

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Identification of a goblet cell-specific enhancer element in the rat intestinal trefoil factor gene promoter bound by a goblet cell nuclear protein.在大鼠肠三叶因子基因启动子中鉴定出一个由杯状细胞核蛋白结合的杯状细胞特异性增强子元件。
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Rho proteins play a critical role in cell migration during the early phase of mucosal restitution.Rho蛋白在黏膜修复早期阶段的细胞迁移过程中发挥着关键作用。
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cDNA cloning of rat pS2 peptide and expression of trefoil peptides in acetic acid-induced colitis.大鼠pS2肽的cDNA克隆及三叶因子肽在乙酸诱导的结肠炎中的表达
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