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首页> 外文期刊>Osteoarthritis and cartilage >Biosynthesis of the vitamin K-dependent matrix Gla protein (MGP) in chondrocytes: a fetuin-MGP protein complex is assembled in vesicles shed from normal but not from osteoarthritic chondrocytes.
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Biosynthesis of the vitamin K-dependent matrix Gla protein (MGP) in chondrocytes: a fetuin-MGP protein complex is assembled in vesicles shed from normal but not from osteoarthritic chondrocytes.

机译:软骨细胞中维生素K依赖的基质Gla蛋白(MGP)的生物合成:胎球蛋白-MGP蛋白复合物组装在从正常而非软骨性软骨细胞脱落的囊泡中。

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摘要

OBJECTIVE: Mineralization has been observed in osteoarthritic cartilage but the mechanisms are incompletely understood. Vitamin K is an essential cofactor in post-translational modification of proteins where specific Glu residues become modified to Ca(++) binding gamma-carboxyglutamic acid residues (Gla). One such protein, matrix Gla protein (MGP), is a known mineralization inhibitor. This study determined if synthesis of MGP and formation of a fetuin-MGP protein complex was altered in chondrocytes and vesicles from osteoarthritis (OA) cartilage. METHODS: Chondrocytes and vesicles were isolated from normal and OA human articular cartilage and lysates prepared. Specific antibodies were used in immunoblotting to detect the mature fully gamma-carboxylated form of MGP (cMGP) and non-gamma-carboxylated MGP (ucMGP) as well as fetuin and MGP-fetuin complexes. gamma-carboxylase activity was measured by (14)CO(2) incorporation into the carboxylase peptide substrate FLEEL. Immunocytochemistry was used to examine fetuin in cartilage sections and uptake of biotin-labeled fetuin by isolated chondrocytes. RESULTS: Chondrocytes and vesicles from osteoarthritic tissue produced significantly less cMGP compared to those from normal cartilage. This correlated with significantly less vitamin K-dependent gamma-carboxylase enzyme activity in OA chondrocytes. Fetuin was found to be present in articular cartilage and cultured chondrocytes were capable of fetuin uptake. A fetuin-MGP complex was identified in normal chondrocytes and in vesicles shed from these cells but not in OA cells or vesicles. CONCLUSIONS: The absence of cMGP and of the cMGP-fetuin complex in OA cells and OA vesicles may be an important mechanism for increased mineralization of osteoarthritic cartilage.
机译:目的:在骨关节炎软骨中观察到矿化现象,但其机理尚不完全清楚。维生素K在蛋白质的翻译后修饰中是必需的辅因子,其中特定的Glu残基被修饰为与Ca(++)结合的gamma-羧基谷氨酸残基(Gla)。一种这样的蛋白,基质Gla蛋白(MGP)是已知的矿化抑制剂。这项研究确定了骨关节炎(OA)软骨的软骨细胞和囊泡中MGP的合成和胎蛋白-MGP蛋白复合物的形成是否发生了改变。方法:从正常和OA人关节软骨中制备软骨细胞和囊泡,并制备裂解物。特异性抗体用于免疫印迹,以检测成熟的完全γ-羧基化的MGP(cMGP)和非γ-羧基化的MGP(ucMGP)以及胎球蛋白和MGP-胎球蛋白复合物。 γ-羧化酶活性是通过(14)CO(2)掺入羧化酶肽底物FLEEL来测量的。免疫细胞化学用于检查软骨切片中的胎球蛋白和分离的软骨细胞对生物素标记的胎球蛋白的摄取。结果:与正常软骨相比,骨关节炎组织的软骨细胞和囊泡产生的cMGP明显减少。这与OA软骨细胞中维生素K依赖性γ-羧化酶活性明显降低有关。发现胎蛋白存在于关节软骨中,并且培养的软骨细胞能够摄取胎蛋白。在正常软骨细胞和从这些细胞脱落的囊泡中鉴定出胎蛋白-MGP复合物,但在OA细胞或囊泡中未鉴定出。结论:OA细胞和OA囊泡中缺乏cMGP和cMGP-胎球蛋白复合物可能是增加骨关节炎软骨矿化的重要机制。

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