Dougherty T J, Gewurz H, Siegel J N
Department of Biology, Purdue University-Calumet, Hammond, IN 46323.
Mol Immunol. 1991 Oct;28(10):1113-20. doi: 10.1016/0161-5890(91)90026-g.
Human and rabbit C-reactive proteins (CRP) are similar in mol. wt, structure and amino acid sequence. In addition to the characteristic phosphoryline (PC)-binding specificity, both CRP molecules bind arginine- and lysine-rich proteins. The human CRP-cationic protein reactivity has been reported to be inhibited by calcium and promoted by PC in the presence of calcium. The present study compares binding and precipitation reactions of rabbit CRP (raCRP) with arginine- and lysine-rich proteins, and demonstrates the differential modulation of these interactions by calcium and acidic pH. Rabbit CRP shows preferential binding and precipitation reactivities with arginine-rich cationic molecules. Binding of raCRP to poly-L-arginine (PLA) and arginine-rich histone (ARH) occurs at pH 6.0, in the presence of calcium and is inhibitable by phosphorylcholine (PC) suggesting an interaction at or near the calcium-modulated PC binding site. The in vitro precipitation of raCRP and arginine-rich cationic molecules is significantly inhibited at pH 6.0, by the non-precipitating lysine-rich ligand PLL, and by physiological levels of calcium, and may reflect the participation of distinct "self-aggregation" sites on CRP in the precipitation response. The significance of the preferential arginine reactivity of raCRP to in vivo functions as a scavenger of chromatin during cell death and/or as a modulator of lipoprotein metabolism during the acute phase response is discussed.
人类和兔C反应蛋白(CRP)在分子量、结构和氨基酸序列上相似。除了具有特征性的磷酸胆碱(PC)结合特异性外,两种CRP分子还能结合富含精氨酸和赖氨酸的蛋白质。据报道,在有钙存在的情况下,人CRP与阳离子蛋白的反应性会被钙抑制,并被PC促进。本研究比较了兔CRP(raCRP)与富含精氨酸和赖氨酸的蛋白质的结合及沉淀反应,并证明了钙和酸性pH对这些相互作用的差异调节。兔CRP对富含精氨酸的阳离子分子表现出优先结合和沉淀反应性。raCRP与聚-L-精氨酸(PLA)和富含精氨酸的组蛋白(ARH)的结合在pH 6.0、有钙存在的情况下发生,并且可被磷酸胆碱(PC)抑制,这表明在钙调节的PC结合位点或其附近存在相互作用。在pH 6.0时,raCRP与富含精氨酸的阳离子分子的体外沉淀会被非沉淀性的富含赖氨酸的配体PLL以及生理水平的钙显著抑制,这可能反映了CRP上不同的“自我聚集”位点参与了沉淀反应。本文讨论了raCRP对精氨酸的优先反应性在体内作为细胞死亡期间染色质清除剂和/或急性期反应期间脂蛋白代谢调节剂的功能的意义。