猪骨涎蛋白的初步结构和细胞表达

Howard S. Shapiro , Jinkun Chen , Jeffrey L. Wrana , Qi Zhang , Max Blum , Jaro Sodek
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引用次数: 66

摘要

骨唾液蛋白(Bone saloprotein, BSP)是一种高度糖基化和硫酸盐化的磷酸化蛋白,是骨的主要非胶原蛋白。为了进一步研究猪骨形成过程中BSP蛋白的表达,从猪骨cDNA文库中分离出BSP cDNA克隆。该蛋白的一级序列来源于最大cDNA插入片段的核苷酸序列和通过自动Edman降解程序确定的氨基末端氨基酸序列。与从人类和大鼠BSPs中获得的序列相比,分别有74%和64%的氨基酸是相同的,另有11%和17%的氨基酸是保守的替代。此外,从哺乳动物bsp原序列中衍生的一致序列中,60%的氨基酸是保守的,16%的氨基酸是保守的。通过聚谷氨酸的两个片段,蛋白质能够与羟基磷灰石结合,以及介导细胞附着的RGD基序保留在保守序列中,许多丝氨酸、苏氨酸和酪氨酸磷酸化、糖基化和酪氨酸硫酸化的潜在位点也保留在保守序列中。二级结构预测和亲水性分析表明,新生BSP具有开放的柔性结构,具有形成大量α-螺旋和部分β-薄片的潜力。用cRNA探针对猪BSP mRNA进行胎猪骨原位杂交,发现BSP在新生骨小梁表面分化成骨细胞中特异性表达,在新生骨形成部位的杂交水平特别高。BSP的高度保守特征及其有限的分布表明这种唾液蛋白在骨形成中起重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of Porcine Bone Sialoprotein: Primary Structure and Cellular Expression

Bone sialoprotein (BSP) is a highly glycosylated and sulphated phosphoprotein that is a major non-collagenous protein of bone. To further characterize the porcine protein and to study its expression during bone formation BSP cDNA clones were isolated from a porcine bone cDNA library. The primary sequence of the protein was derived from the nucleotide sequence of the largest cDNA insert and from the amino-terminal amino acid sequence determined by the automated Edman degradation procedure. When compared with sequences obtained from the human and rat BSPs 74% and 64% of the amino acids, respectively, were identical and a further 11 % and 17%, respectively, were conservative replacements. Moreover, 60% of the amino acids in a concensus sequence derived from the primary sequences of mammalian BSPs were conserved with 16% conservative replacements. The two stretches of polyglutamic acid, through which the protein is capable of binding to hydroxyapatite, and an RGD motif that mediates cell attachment are retained in conserved sequences as are a number of potential sites of serine, threonine and tyrosine phosphorylation, glycosylation and tyrosine sulphation. Secondary structure prediction and hydrophilicity analysis indicate that the nascent BSP has an open flexible structure with the potential to form significant amounts of α-helix and some β-sheet. In situ hybridization of fetal porcine bone with cRNA probes to porcine BSP mRNA shows that BSP is specifically expressed in differentiated osteoblasts on the surface of newly-forming bone trabeculae with especially high levels of hybridization at sites of de novo bone formation. The highly conserved features of BSP and its restricted distribution indicate an important role for this sialoprotein in the formation of bone.

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