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与软骨调节素-I具有同源性的腱调蛋白C末端结构域的抗血管生成作用。

Anti-angiogenic action of the C-terminal domain of tenomodulin that shares homology with chondromodulin-I.

作者信息

Oshima Yusuke, Sato Koji, Tashiro Fumi, Miyazaki Jun-ichi, Nishida Koji, Hiraki Yuji, Tano Yasuo, Shukunami Chisa

机构信息

Department of Cellular Differentiation, Institute for Frontier Medical Sciences, Kyoto University, Kyoto 606-8507, Japan.

出版信息

J Cell Sci. 2004 Jun 1;117(Pt 13):2731-44. doi: 10.1242/jcs.01112. Epub 2004 May 18.

Abstract

Tenomodulin (TeM) is a type II transmembrane glycoprotein that contains a C-terminal domain with homology to the mature, secreted form of chondromodulin-I (ChM-I), a cartilage-derived angiogenesis inhibitor. TeM transcripts have been found in hypovascular tissues such as tendons and ligaments but the biological activity of TeM has not yet been fully explored. Using an adenovirus expression system, we utilized the forced expression and subsequent secretion of the human TeM C-terminal 116 amino acids (Ad-shTeM) in human umbilical vein endothelial cells (HUVECs) to assess the anti-angiogenic properties of TeM. The C-terminal 120 amino acids of the human ChM-I precursor (Ad-shChM-I) was similarly expressed in HUVECs as a comparison study. Transduction of both Ad-shTeM and Ad-shChM-I resulted in significant impairment of the tube-forming activity of HUVECs, when cultured in Matrigel. Similarly, conditioned medium from COS7 cells, transfected with plasmid DNA encoding shTeM or shChM-I, inhibited tube formation of HUVECs when compared to medium derived from either COS7 cells transfected with control vector or from non-transfected cells. Upon infection of HUVECs with Ad-shTeM or Ad-shChM-I, DNA synthesis stimulated by vascular endothelial growth factor (VEGF) was reduced to 40-50% of normal levels. Additionally, in a modified Boyden chamber assay, migration of HUVECs in response to VEGF was significantly affected following transduction of either Ad-shTeM or Ad-shChM-I and these transduced HUVECs were found to spread well on type I collagen or fibronectin, but not on vitronectin. Furthermore, the transduction of either Ad-shTeM or Ad-shChM-I in human melanoma cells resulted in suppression of tumor growth in association with decreased vessel density in vivo. Hence, we have demonstrated that, similarly to ChM-1, the C-terminal domain of TeM exhibits both anti-angiogenic and anti-tumor activities when expressed in a secreted form.

摘要

腱调蛋白(TeM)是一种II型跨膜糖蛋白,其C末端结构域与软骨调节素-I(ChM-I,一种软骨衍生的血管生成抑制剂)的成熟分泌形式具有同源性。TeM转录本已在诸如肌腱和韧带等低血管组织中发现,但TeM的生物学活性尚未得到充分探索。我们使用腺病毒表达系统,通过在人脐静脉内皮细胞(HUVECs)中强制表达并随后分泌人TeM的C末端116个氨基酸(Ad-shTeM),来评估TeM的抗血管生成特性。作为对照研究,人ChM-I前体的C末端120个氨基酸(Ad-shChM-I)也同样在HUVECs中表达。当在基质胶中培养时,Ad-shTeM和Ad-shChM-I的转导均导致HUVECs的管形成活性显著受损。同样,用编码shTeM或shChM-I的质粒DNA转染的COS7细胞的条件培养基,与用对照载体转染的COS7细胞或未转染细胞的培养基相比,抑制了HUVECs的管形成。用Ad-shTeM或Ad-shChM-I感染HUVECs后,血管内皮生长因子(VEGF)刺激的DNA合成降至正常水平的40 - 50%。此外,在改良的博伊登小室试验中,Ad-shTeM或Ad-shChM-I转导后,HUVECs对VEGF的迁移反应受到显著影响,并且发现这些转导的HUVECs在I型胶原或纤连蛋白上能很好地铺展,但在玻连蛋白上则不能。此外,在人黑色素瘤细胞中转导Ad-shTeM或Ad-shChM-I均导致体内肿瘤生长受到抑制,同时血管密度降低。因此,我们已经证明,与ChM-1类似,TeM的C末端结构域以分泌形式表达时具有抗血管生成和抗肿瘤活性。

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