Choglay A A, Purdom I F, Hulmes D J
Department of Biochemistry, University of Edinburgh, United Kingdom.
J Biol Chem. 1993 Mar 25;268(9):6107-14.
The interactions of [3H]procollagen I with various phospholipids were studied by density gradient centrifugation. At physiological conditions of pH, ionic strength, and temperature, there was no evidence for procollagen binding to phosphatidylcholine, phosphatidylethanolamine, phosphatidylinositol, or phosphatidylserine liposomes. In contrast, procollagen I bound strongly to sphingomyelin liposomes in a reversible and saturable manner, with an apparent dissociation constant (Kd) of 2.6 nM. Binding occurred over a range of temperatures (4-37 degrees C) and was relatively unaffected by salt concentrations up to 1.2 M NaCl. Binding was observed in phosphate buffers, but not in the presence of high concentrations of Tris or Hepes. Bovine serum albumin had no effect on procollagen binding to sphingomyelin, and neither did unlabeled type I collagen, with or without the nonhelical telopeptides. Procollagen II and denatured procollagen I also bound to sphingomyelin. Procollagen binding to sphingomyelin at 35 degrees C was considerably reduced when small amounts of phosphatidylcholine were present, although binding was partially restored when the temperature was reduced below the corresponding phase transition temperature. Purified unlabeled procollagen COOH-terminal propeptides successfully competed for binding, and 125I-labeled COOH-terminal propeptides bound to sphingomyelin in the absence of procollagen. Weaker binding to sphingomyelin, mediated by the collagen triple helical region, was also observed; but this was dominated by the sphingomyelin-COOH-terminal propeptide interaction. The data suggest a novel mechanism for matrix vesicle-mediated biomineralization.
通过密度梯度离心法研究了[3H]原胶原I与各种磷脂的相互作用。在生理条件下的pH值、离子强度和温度下,没有证据表明原胶原与磷脂酰胆碱、磷脂酰乙醇胺、磷脂酰肌醇或磷脂酰丝氨酸脂质体结合。相反,原胶原I以可逆且饱和的方式强烈结合到鞘磷脂脂质体上,表观解离常数(Kd)为2.6 nM。结合在一系列温度(4 - 37摄氏度)范围内发生,并且在高达1.2 M NaCl的盐浓度下相对不受影响。在磷酸盐缓冲液中观察到结合,但在高浓度的Tris或Hepes存在时未观察到结合。牛血清白蛋白对原胶原与鞘磷脂的结合没有影响,未标记的I型胶原(有无非螺旋端肽)也没有影响。原胶原II和变性的原胶原I也与鞘磷脂结合。当存在少量磷脂酰胆碱时,35摄氏度下原胶原与鞘磷脂的结合显著降低,尽管当温度降低到相应的相变温度以下时结合部分恢复。纯化的未标记原胶原COOH末端前肽成功竞争结合,并且在没有原胶原的情况下,125I标记的COOH末端前肽与鞘磷脂结合。还观察到由胶原三螺旋区域介导的与鞘磷脂的较弱结合;但这主要由鞘磷脂 - COOH末端前肽相互作用主导。这些数据提示了基质小泡介导生物矿化的一种新机制。