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冷球蛋白的静电特性。

Electrostatic properties of cryoimmunoglobulins.

作者信息

Lawson E Q, Brandau D T, Trautman P A, Middaugh C R

机构信息

Department of Molecular Biology, University of Wyoming, Laramie 82071.

出版信息

J Immunol. 1988 Feb 15;140(4):1218-22.

PMID:3343512
Abstract

Inhibition of the cryoprecipitation of cryoimmunoglobulins by neutral salts suggests that intermolecular electrostatic (charge-charge) interactions are responsible for their abnormal solution properties. To test this hypothesis, H+ titration curves and isoelectric points were measured for two monoclonal IgG cryoglobulins (Ger and Muk) and compared with four normal (cold soluble) monoclonal IgG. The cryoglobulin Ger manifested values outside the range encountered for the other proteins. The partitioning of the IgG proteins was also examined in aqueous polyethylene glycol-dextran two-phase systems in the presence of both positive and negative salt-induced electrostatic potentials across the phase interface. Both cryoglobulins were found to behave as if they were more negatively charged than the noncryoglobulins. The experiments support the hypothesis that the differences in solubility behavior of monoclonal cryoglobulin and noncryoglobulin proteins are caused by differences in the electrostatic properties of the proteins.

摘要

中性盐对冷免疫球蛋白冷沉淀的抑制作用表明,分子间静电(电荷-电荷)相互作用是其异常溶液性质的原因。为了验证这一假设,测量了两种单克隆IgG冷球蛋白(Ger和Muk)的H⁺滴定曲线和等电点,并与四种正常(冷溶性)单克隆IgG进行了比较。冷球蛋白Ger表现出的值超出了其他蛋白质的范围。在相界面存在正负盐诱导的静电势的情况下,还研究了IgG蛋白在聚乙二醇-葡聚糖双水相系统中的分配情况。发现两种冷球蛋白的行为表现得好像它们比非冷球蛋白带更多的负电荷。这些实验支持了这样的假设,即单克隆冷球蛋白和非冷球蛋白蛋白在溶解性方面的差异是由蛋白质静电性质的差异引起的。

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