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首页> 外文期刊>The biochemical journal >Modulation of crystal formation by bone phosphoproteins: role of glutamic acid-rich sequences in the nucleation of hydroxyapatite by bone sialoprotein
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Modulation of crystal formation by bone phosphoproteins: role of glutamic acid-rich sequences in the nucleation of hydroxyapatite by bone sialoprotein

机译:骨磷蛋白对晶体形成的调节:富含谷氨酸的序列在骨唾液蛋白成核的羟基磷灰石成核中的作用

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pBone sialoprotein (BSP) is a bone-specific glycoprotein containing phosphoserine and sulphotyrosine residues and regions of contiguous glutamic acid residues. Recent studies in this laboratory have shown that BSP is capable of nucleating the bone mineral hydroxyapatite in a steady-state agarose gel system. We show here that chemical modification of carboxylate groups abolishes the nucleation activity of BSP, but enzymic dephosphorylation has no effect. Formation of hydroxyapatite is also induced by poly(L-glutamic acid) and poly(D-glutamic acid), but not by poly(L-aspartic acid) or poly(L-lysine). Calreticulin, a muscle protein with short sequences of contiguous glutamic acid residues, also lacks nucleation activity. These findings suggest that the nucleation of hydroxyapatite by BSP involves one or both of the glutamic acid-rich sequences. Based on these findings and others, we propose that polycarboxylate sequences represent a general site for growth-modulating interactions between proteins and biological crystals./p
机译:骨唾液蛋白(BSP)是一种骨特异性糖蛋白,包含磷酸丝氨酸和磺基酪氨酸残基以及连续的谷氨酸残基区域。该实验室的最新研究表明,BSP能够在稳态琼脂糖凝胶系统中使骨骼矿物质羟磷灰石成核。我们在这里表明,羧酸酯基团的化学修饰消除了BSP的成核活性,但酶促去磷酸化没有作用。聚(L-谷氨酸)和聚(D-谷氨酸)也诱导了羟基磷灰石的形成,但是聚(L-天冬氨酸)或聚(L-赖氨酸)却没有。钙网蛋白是一种具有短连续谷氨酸残基序列的肌肉蛋白,也缺乏成核活性。这些发现表明,BSP对羟基磷灰石的成核涉及富含谷氨酸的序列中的一个或两个。根据这些发现和其他发现,我们认为聚羧酸盐序列代表了蛋白质与生物晶体之间生长调节相互作用的通用位点。

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