兄弟蛋白的翻译后修饰及其在成骨和牙本质发生中的作用。

C Qin, O Baba, W T Butler
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引用次数: 422

摘要

骨和牙本质的细胞外基质(ECM)含有几种非胶原蛋白。一类非胶原蛋白被称为兄弟蛋白(小整合素结合配体,n-连接糖蛋白)家族,包括骨桥蛋白(OPN),骨唾液蛋白(BSP),牙本质基质蛋白1 (DMP1),牙本质唾液蛋白(DSPP)和基质细胞外磷酸糖蛋白(MEPE)。这些多阴离子兄弟蛋白被认为在骨和牙本质的矿化中起着关键的生物学作用。虽然控制骨和牙本质形成的具体机制尚不清楚,但很明显,兄弟姐妹家族成员的一些功能依赖于翻译后修饰(PTMs)的性质和程度,如磷酸化、糖基化和蛋白水解加工,因为这些PTMs会对其结构产生重大影响。OPN和BSP以全长形式存在于骨和牙本质的ECM中,而氨基酸测序表明DMP1和DSPP以X-Asp键断裂产生的蛋白水解片段存在。我们假设DMP1和DSPP的加工是由PHEX酶催化的,因为这种蛋白是一种主要在骨骼和牙齿中表达的内肽酶,在天冬氨酸残基的nh2端具有强烈的裂解偏好。我们设想DMP1和DSPP的蛋白水解过程可能是一个激活过程,在骨形成和牙本质形成中起着重要的关键作用,并且该过程的失败将导致骨和牙本质矿化缺陷,正如在x连锁低磷血症佝偻病中观察到的那样。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Post-translational modifications of sibling proteins and their roles in osteogenesis and dentinogenesis.

The extracellular matrix (ECM) of bone and dentin contains several non-collagenous proteins. One category of non-collagenous protein is termed the SIBLING (Small Integrin-Binding LIgand, N-linked Glycoprotein) family, that includes osteopontin (OPN), bone sialoprotein (BSP), dentin matrix protein 1 (DMP1), dentin sialophosphoprotein (DSPP), and matrix extracellular phosphoglycoprotein (MEPE). These polyanionic SIBLING proteins are believed to play key biological roles in the mineralization of bone and dentin. Although the specific mechanisms involved in controlling bone and dentin formation are still unknown, it is clear that some functions of the SIBLING family members are dependent on the nature and extent of post-translational modifications (PTMs), such as phosphorylation, glycosylation, and proteolytic processing, since these PTMs would have significant effects on their structure. OPN and BSP are present in the ECM of bone and dentin as full-length forms, whereas amino acid sequencing indicates that DMP1 and DSPP exist as proteolytically processed fragments that result from scission of X-Asp bonds. We hypothesized that the processing of DMP1 and DSPP is catalyzed by the PHEX enzyme, since this protein, an endopeptidase that is predominantly expressed in bone and tooth, has a strong preference for cleavage at the NH2-terminus of aspartyl residue. We envision that the proteolytic processing of DMP1 and DSPP may be an activation process that plays a significant, crucial role in osteogenesis and dentinogenesis, and that a failure in this processing would cause defective mineralization in bone and dentin, as observed in X-linked hypophosphatemic rickets.

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