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Interactions of inorganic phosphate and sulfate anions with collagen.

机译:无机磷酸盐和硫酸根与胶原的相互作用。

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We use direct infrared measurements to determine the number of binding sites, their dissociation constants, and preferential interaction parameters for inorganic phosphate and sulfate anions in collagen fibrils from rat tail tendons. In contrast to previous reports of up to 150 bound phosphates per collagen molecule, we find only 1-2 binding sites for sulfate and divalent phosphate under physiological conditions and approximately 10 binding sites at low ionic strength. The corresponding dissociation constants depend on NaCl concentration and pH and vary from approximately 50 muM to approximately 1-5 mM in the physiological range of pH. In fibrils, bound anions appear to form salt bridges between positively charged amino acid residues within regions of high excess positive charge. In solution, we found no evidence of appreciable sulfate or phosphate binding to isolated collagen molecules. Although sulfate and divalent phosphate bind to fibrillar collagen at physiological concentrations, our X-ray diffraction and in vitro fibrillogenesis experiments suggest that this binding plays little role in the formation, stability and structure of fibrils. In particular, we demonstrate that the previously reported increase in the critical fibrillogenesis concentration of collagen is caused by preferential exclusion of "free" (not bound to specific sites) sulfate and divalent phosphate from interstitial water in fibrils rather than by anion binding. Contrary to divalent phosphate, monovalent phosphate does not bind to collagen. It is preferentially excluded from interstitial water in fibrils, but it has no apparent effect on critical fibrillogenesis concentration at physiological NaCl and pH.
机译:我们使用直接红外测量来确定来自大鼠尾肌腱的胶原型原纤维中的无机磷酸盐和硫酸盐阴离子的结合位点,其解离常数和优先相互作用参数。与先前的报告相反,每个胶原蛋白分子最多150次结合的磷酸盐,我们发现仅在生理条件下硫酸盐和二价磷酸盐的1-2个结合位点,并且在低离子强度下约10个结合位点。相应的解离常数取决于NaCl浓度和pH,在pH的生理范围内从大约50毫米至约1-5mm之间变化。在原纤维中,结合的阴离子似乎在高过量的阳性电荷区域内的带正电荷的氨基酸残基之间形成盐桥。在溶液中,我们发现没有明显的硫酸盐或磷酸盐与分离的胶原分子结合的证据。尽管在生理浓度下硫酸盐和二价磷酸盐与纤维胶原结合,但我们的X射线衍射和体外原纤维生成实验表明,这种结合在原纤维的形成,稳定性和结构中起着很小的作用。特别地,我们表明先前报道的胶原蛋白的关键原纤维生成浓度的增加是由优先排除在原纤维中的间质水中的“自由”(不合得的特异性位点)硫酸盐和二价磷酸盐而不是阴离子结合引起的。与二价磷酸盐相反,一价磷酸盐不与胶原结合。优先从原纤维中的间质水中排除,但它对生理NaCl和pH的关键原纤维生成浓度没有明显影响。

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