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细胞外GTP结合型转谷氨酰胺酶2是软骨细胞肥大分化和钙化的分子开关。

External GTP-bound transglutaminase 2 is a molecular switch for chondrocyte hypertrophic differentiation and calcification.

作者信息

Johnson Kristen A, Terkeltaub Robert A

机构信息

Veterans Affairs Medical Center, University of California, San Diego, La Jolla, California 92161, USA.

出版信息

J Biol Chem. 2005 Apr 15;280(15):15004-12. doi: 10.1074/jbc.M500962200. Epub 2005 Feb 3.

Abstract

Chondrocyte maturation to hypertrophy, associated with up-regulated transglutaminase 2 (TG2) expression, mediates not only physiologic growth plate mineralization but also pathologic matrix calcification and dys-regulated matrix repair in osteoarthritic articular cartilage. TG2-/- mouse chondrocytes demonstrate markedly inhibited progression to hypertrophic differentiation in response to both retinoic acid and the chemokine CXCL1. Here, our objectives were to test if up-regulated TG2 alone is sufficient to promote chondrocyte hypertrophic differentiation and to identify TG2 molecular determinants and potential downstream signals involved. TG2 activities, regulated by nucleotides and calcium, include cross-linking of cartilage matrix proteins, binding of fibronectin, and hydrolysis of GTP and ATP. Following transfection of TG2 site-directed mutants into chondrocytic cells, we observed that wild type TG2, and TG catalytic site and fibronectin-binding mutants promoted type X collagen expression and matrix calcification consistent with chondrocyte hypertrophic differentiation. In contrast, transfected mutants of TG2 GTP binding (K173L) and externalization (Y274A) sites did not stimulate chondrocyte hypertrophy. Recombinant TG2 treatment of bovine cartilage explants demonstrated that extracellular TG2 induced hypertrophy more robustly in the GTP-bound state, confirming an essential role of TG2 GTP binding. Finally, TG2 treatment induced type X collagen in a beta1 integrin-mediated manner, associated with rapid phosphorylation of both Rac1 and p38 kinases that were inhibited by mutation of the TG2 GTP binding site. In conclusion, externalized GTP-bound TG2 serves as a molecular switch for differentiation of chondrocytes to a hypertrophic, calcifying phenotype in a manner that does not require either TG2 transamidation activity or fibronectin binding.

摘要

软骨细胞成熟为肥大细胞,与转谷氨酰胺酶2(TG2)表达上调相关,不仅介导生理性生长板矿化,还介导骨关节炎关节软骨中的病理性基质钙化和失调的基质修复。TG2基因敲除小鼠软骨细胞在视黄酸和趋化因子CXCL1作用下,向肥大分化的进程明显受到抑制。在此,我们的目标是测试单独上调的TG2是否足以促进软骨细胞肥大分化,并确定TG2的分子决定因素和潜在的下游信号。TG2的活性受核苷酸和钙调节,包括软骨基质蛋白的交联、纤连蛋白的结合以及GTP和ATP的水解。将TG2定点突变体转染到软骨细胞后,我们观察到野生型TG2、TG催化位点和纤连蛋白结合突变体促进了X型胶原表达和基质钙化,这与软骨细胞肥大分化一致。相比之下,TG2的GTP结合(K173L)和外化(Y274A)位点的转染突变体并未刺激软骨细胞肥大。重组TG2处理牛软骨外植体表明,细胞外TG2在GTP结合状态下更有力地诱导肥大,证实了TG2 GTP结合的重要作用。最后,TG2处理以β1整合素介导的方式诱导X型胶原,这与Rac1和p38激酶的快速磷酸化相关,而TG2 GTP结合位点的突变可抑制这种磷酸化。总之,外化的GTP结合型TG2作为一种分子开关,以一种既不需要TG2转酰胺酶活性也不需要纤连蛋白结合的方式,促使软骨细胞分化为肥大、钙化表型。

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