Ohno-Iwashita Y, Iwamoto M, Ando S, Mitsui K, Iwashita S
Department of Biochemistry, Tokyo Metropolitan Institute of Gerontology, Japan.
Biochim Biophys Acta. 1990 Apr 30;1023(3):441-8. doi: 10.1016/0005-2736(90)90137-d.
A derivative of cytolytic theta-toxin from Clostridium perfringens was prepared by limited proteolytic digestion of the native toxin followed by methylation. Among the chloroform/methanol-extractable, lipid components of sheep and human erythrocytes, the proteinase-nicked and methylated derivative (MC theta) specifically binds to cholesterol. While MC theta retains binding affinity comparable to that of intact toxin, it causes no obvious membrane damage, resulting in no hemolysis at temperatures of 37 degrees C or lower. Using MC theta, we demonstrated the possible existence of high- and low-affinity sites for theta-toxin on sheep erythrocytes at both 37 degrees C and 10 degrees C. The number of high-affinity sites on sheep erythrocytes was estimated to be approximately 3-times larger at 37 degrees C than that at 10 degrees C. In addition, high- and low-affinity sites were demonstrated in human erythrocytes and a lymphoma B cell line, BALL-1 cells. Both binding sites disappear upon simultaneous treatment of cells with sublytic doses of digitonin, suggesting that cholesterol is an essential component of both the high- and low-affinity sites and that the mode of cholesterol existence in plasma membranes is heterogeneous in these cells. Because of its high affinity for membrane cholesterol without causing any obvious membrane changes at physiological temperatures, MC theta may provide a probe for use in the functional study of membrane cholesterol.
通过对产气荚膜梭菌的溶细胞性θ毒素进行有限的蛋白水解消化,随后进行甲基化,制备了该毒素的一种衍生物。在绵羊和人红细胞的氯仿/甲醇可提取脂质成分中,经蛋白酶切割和甲基化的衍生物(MC θ)特异性结合胆固醇。虽然MC θ保留了与完整毒素相当的结合亲和力,但在37℃或更低温度下它不会引起明显的膜损伤,也不会导致溶血。利用MC θ,我们证明了在37℃和10℃时,绵羊红细胞上可能存在θ毒素的高亲和力和低亲和力位点。绵羊红细胞上高亲和力位点的数量在37℃时估计比10℃时大约多3倍。此外,在人红细胞和淋巴瘤B细胞系BALL-1细胞中也证明了高亲和力和低亲和力位点的存在。当用亚溶剂量的洋地黄皂苷同时处理细胞时,这两个结合位点都会消失,这表明胆固醇是高亲和力和低亲和力位点的重要组成部分,并且在这些细胞中质膜中胆固醇的存在方式是异质的。由于MC θ在生理温度下对膜胆固醇具有高亲和力且不会引起任何明显的膜变化,它可能为膜胆固醇的功能研究提供一种探针。