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由人金属蛋白酶组织抑制剂-3(TIMP-3)编码基因的启动子介导的基因表达的时空调控。

Temporal and spatial regulation of gene expression mediated by the promoter for the human tissue inhibitor of metalloproteinases-3 (TIMP-3)-encoding gene.

作者信息

Zeng Y, Rosborough R C, Li Y, Gupta A R, Bennett J

机构信息

Department of Ophthalmology, Scheie Eye Institute, University of Pennsylvania, School of Medicine, Philadelphia 19104-6069, USA.

出版信息

Dev Dyn. 1998 Mar;211(3):228-37. doi: 10.1002/(SICI)1097-0177(199803)211:3<228::AID-AJA4>3.0.CO;2-J.

Abstract

A complex interplay between enzymes involved in extracellular matrix formation and their inhibitors is thought to control organogenesis during mammalian development. Disturbance of this balance may result in a wide range of diseases, including macular degeneration, arthritis, and tumor metastases. In order to define elements which may be involved in regulating human tissue inhibitor of metalloproteinase 3 (TIMP3) expression, we isolated and sequenced a clone containing 1315 bp of the 5'-upstream region of the human TIMP-3-encoding gene. A 1.2 kb fragment of this clone, which contains multiple motifs which are binding sites for known transcription factors, was used to drive expression of the lacZ reporter gene in multiple lines of transgenic mice. TIMP3 promoter activity, detected through beta-galactosidase histochemical assay, was observed at high levels in selected tissues, the identity of which varied according to developmental stage. TIMP3 promoter activity was detected at embryonic and early postnatal stages in tissues undergoing extensive remodeling, such as developing somites, bones and joints, choroid plexus, webs between the digits, and the spongiotrophoblastic portion of the placenta. In adulthood, TIMP3 promoter activity was restricted to a few tissues which exhibit high metabolic activity or rapid turnover. These include the retinal pigment epithelium (RPE), cells of the kidney cortex, hair follicles, gingiva, ovarian follicles, and testis. The results suggest that TIMP3 expression plays an active role in developmental patterning and in the maintenance of specific differentiated tissues.

摘要

参与细胞外基质形成的酶与其抑制剂之间存在复杂的相互作用,这种相互作用被认为在哺乳动物发育过程中控制着器官形成。这种平衡的紊乱可能导致多种疾病,包括黄斑变性、关节炎和肿瘤转移。为了确定可能参与调节人金属蛋白酶组织抑制剂3(TIMP3)表达的元件,我们分离并测序了一个克隆,该克隆包含人TIMP - 3编码基因5'上游区域的1315 bp。这个克隆的一个1.2 kb片段包含多个作为已知转录因子结合位点的基序,用于驱动lacZ报告基因在多系转基因小鼠中的表达。通过β - 半乳糖苷酶组织化学分析检测到的TIMP3启动子活性,在选定组织中高水平表达,其身份根据发育阶段而变化。在胚胎期和出生后早期,在经历广泛重塑的组织中检测到TIMP3启动子活性,如发育中的体节、骨骼和关节、脉络丛、指蹼以及胎盘的海绵滋养层部分。在成年期,TIMP3启动子活性局限于少数具有高代谢活性或快速更新的组织。这些组织包括视网膜色素上皮(RPE)、肾皮质细胞、毛囊、牙龈、卵巢滤泡和睾丸。结果表明,TIMP3表达在发育模式形成和特定分化组织的维持中发挥着积极作用。

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