Chen Q, Johnson D M, Haudenschild D R, Tondravi M M, Goetinck P F
Cutaneous Biology Research Center, Massachusetts General Hospital, Charlestown 02129, USA.
Mol Biol Cell. 1995 Dec;6(12):1743-53. doi: 10.1091/mbc.6.12.1743.
Cartilage matrix protein (CMP) is expressed specifically in mature cartilage and consists of two von Willebrand factor A domains (CMP-A1 and CMP-A2) that are separated by an epidermal growth factor-like domain, and a coiled-coil tail domain at the carboxyl terminal end. We have shown previously that CMP interacts with type II collagen-containing fibrils in cartilage. In this study, we describe a type II collagen-independent CMP filament and we analyze the structural requirement for the formation of this type of filament. Recombinant wild-type CMP and two mutant forms were expressed in chick primary cell cultures using a retrovirus expression system. In chondrocytes, the wild-type virally encoded CMP is able to form disulfide bonded trimers and to assemble into filaments. Filaments also form with CMP whose Cys455 and Cys457 in the tail domain were mutagenized to prevent interchain disulfide bond formation. Therefore, intermolecular disulfide bonds are not necessary for the assembly of CMP into filaments. Both the wild-type and the double cysteine mutant also form filaments in fibroblasts, indicating that chondrocyte-specific factors are not required for filament formation. A truncated form of CMP that consists only of the CMP-A2 domain and the tail domain can form trimers but fails to form filaments, indicating that the deleted CMP-A1 domain and/or the epidermal growth factor domain are necessary for filament assembly but not for trimer formation. Furthermore, the expression of the virally encoded truncated CMP in chondrocyte culture disrupts endogenous CMP filament formation. Together these data suggest a role for CMP in cartilage matrix assembly by forming filamentous networks that require participation and coordination of individual domains of CMP.
软骨基质蛋白(CMP)特异性表达于成熟软骨中,由两个血管性血友病因子A结构域(CMP-A1和CMP-A2)组成,这两个结构域被一个表皮生长因子样结构域隔开,并且在羧基末端有一个卷曲螺旋尾部结构域。我们之前已经表明,CMP与软骨中含II型胶原蛋白的原纤维相互作用。在本研究中,我们描述了一种不依赖II型胶原蛋白的CMP细丝,并分析了形成这种细丝的结构要求。使用逆转录病毒表达系统在鸡原代细胞培养物中表达重组野生型CMP和两种突变形式。在软骨细胞中,野生型病毒编码的CMP能够形成二硫键连接的三聚体并组装成细丝。当CMP尾部结构域中的Cys455和Cys457被诱变以防止链间二硫键形成时,也会形成细丝。因此,分子间二硫键对于CMP组装成细丝不是必需的。野生型和双半胱氨酸突变体在成纤维细胞中也形成细丝,表明细丝形成不需要软骨细胞特异性因子。仅由CMP-A2结构域和尾部结构域组成的截短形式的CMP可以形成三聚体,但不能形成细丝,这表明缺失的CMP-A1结构域和/或表皮生长因子结构域对于细丝组装是必需的,但对于三聚体形成不是必需的。此外,病毒编码的截短CMP在软骨细胞培养物中的表达会破坏内源性CMP细丝的形成。这些数据共同表明,CMP通过形成需要CMP各个结构域参与和协调的丝状网络,在软骨基质组装中发挥作用。