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首页> 外文期刊>Biochemistry and Cell Biology >Synthesis and processing of bone sialoproteins during de novo bone formation in vitro.
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Synthesis and processing of bone sialoproteins during de novo bone formation in vitro.

机译:体外新生骨形成过程中骨唾液蛋白的合成和加工。

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摘要

Bone sialoprotein (BSP) and osteopontin (OPN) are sulphated and phosphorylated sialoglycoproteins that regulate the formation of hydroxyapatite crystals during de novo bone formation. To gain insights into the relationship between the synthesis and posttranslational modification of BSP and OPN and the mineralization of bone, pulse-chase studies were conducted on cultures of newly forming bone nodules produced by fetal rat calvarial cells in vitro. Cultures were pulse labelled with 35SO4, or with either 32PO4 or [gamma-32P]ATP to study intracellular and extracellular phosphorylation, respectively, and chased in isotope-free medium for various times up to 24 h. The presence of radiolabelled BSP and OPN was determined in the cells, in culture medium, and in various tissue compartments obtained by dissociative extraction with 4 M GuHCl (G1), 0.5 M EDTA (E), and again with 4 M GuHCl (G2) and a bacterial collagenase digestion of the demineralized collagenous tissue residue. With each isotope employed, radiolabelled BSP and OPN were detected in the E extract within the 1-h chase period and increased in amount with time. Similarly, 35SO4- and 32PO4-labelled BSP increased in the G2 extract, but OPN was not detected. In the G1 extract the 35SO4-labelled BSP decreased with chase time, whereas the 32PO4-labelled BSP increased. No differences were evident in the profiles of BSP labelled with 32PO4 or [gamma-32P]ATP. In the absence of beta-glycerophosphate, which is required for optimal mineralization of the bone nodules, 35SO4-labelled BSP was increased in the medium and G1 extract and decreased in the E extract and G2 extract after 3 h. In addition to differences in the tissue compartmentalization of BSP and OPN, these studies indicate that 35SO4 is lost from BSP during mineralization and that isoforms of BSP exist with a selective affinity for the organic and mineral phases. Moreover, the additional phosphorylation of BSP and OPN catalyzed by ectokinase activity does not appear to alter the distribution of these sialoproteins.
机译:骨唾液蛋白(BSP)和骨桥蛋白(OPN)是硫酸化和磷酸化的唾液糖蛋白,可在新生骨形成过程中调节羟基磷灰石晶体的形成。为了深入了解BSP和OPN的合成,翻译后修饰与骨矿化之间的关系,对胎鼠颅盖细胞体外产生的新形成的结节的培养物进行了脉冲追踪研究。将培养物用35SO4或32PO4或[γ-32P] ATP进行脉冲标记,分别研究细胞内和细胞外磷酸化,并在无同位素的培养基中追踪长达24小时的不同时间。用4 M GuHCl(G1),0.5 M EDTA(E),再用4 M GuHCl(G2)进行解离萃取获得的细胞,培养基和各种组织隔室中都确定了放射性标记的BSP和OPN的存在和细菌胶原酶消化的脱矿质胶原组织残留物。对于每个采用的同位素,在1小时的追踪时间内,E提取物中都检测到了放射性标记的BSP和OPN,并随时间增加。同样,G2提取物中35SO4-和32PO4标记的BSP升高,但未检测到OPN。在G1提取物中,35SO4标记的BSP随追赶时间而减少,而32PO4标记的BSP随追赶时间而增加。在用32PO4或[γ-32P] ATP标记的BSP谱中没有明显差异。在没有β-甘油磷酸盐的情况下,这是最佳的矿化骨结节所必需的,在3小时后,培养基和G1提取物中35SO4标记的BSP升高,而E提取物和G2提取物中BSO降低。除了在BSP和OPN的组织分隔方面存在差异外,这些研究还表明,矿化过程中BSP损失了35SO4,并且存在BSP的同工型,对有机相和矿物相具有选择性亲和力。此外,由外切激酶活性催化的BSP和OPN的额外磷酸化似乎并未改变这些唾液蛋白的分布。

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