Silversmith R E, Nelsestuen G L
Biochemistry. 1986 Feb 25;25(4):852-60. doi: 10.1021/bi00352a017.
Light-scattering intensity was shown to be a reliable, direct, and quantitative technique for monitoring the assembly of the membrane attack complex of complement (proteins C5b-6, C7, C8, and C9) on small unilamellar phosphatidylcholine vesicles. The assembly on vesicles occurred in a simple fashion; complexes of C5b-7 bound noncooperatively to the vesicles, and final assembly of C5b-9 did not induce vesicle aggregation or fragmentation. When C5b-6 and C7 were mixed in the presence of vesicles but at molar protein/vesicle ratios of less than 1, there was quantitative binding of C5b-7 to the vesicles with no concomitant aggregation of C5b-7. If C7 was added at a slower rate, quantitative binding was obtained at molar C5b-7/vesicle ratios of up to 5. The latter observations (a) were consistent with the proposal that C5b-7 aggregation and membrane binding were competitive events and (b) defined conditions under which light-scattering intensity measurements could monitor C5b-9 assembly on vesicles without contribution from the fluid-phase assembly. The C8/C5b-7 ratio in the phospholipid-C5b-8 complex was 0.97 +/- 0.12, and the maximum ratio of C9/C5b-8 in the final complex was 16.2 +/- 2.0. One C9 molecule associated rapidly with each phospholipid-C5b-8, followed by slower incorporation of the remaining C9 molecules. The initial velocity of the slow phase of C9 addition was easily saturated with C9 and gave an activation energy of 37 kcal/mol. This was identical with the value measured for the analogous process in the fluid-phase assembly.(ABSTRACT TRUNCATED AT 250 WORDS)
光散射强度被证明是一种可靠、直接且定量的技术,用于监测补体膜攻击复合物(蛋白质C5b - 6、C7、C8和C9)在小单层磷脂酰胆碱囊泡上的组装。囊泡上的组装以简单的方式发生;C5b - 7复合物非协同地结合到囊泡上,并且C5b - 9的最终组装不会诱导囊泡聚集或破碎。当C5b - 6和C7在囊泡存在的情况下混合,但蛋白质/囊泡摩尔比小于1时,C5b - 7定量结合到囊泡上,且没有伴随C5b - 7的聚集。如果以较慢的速率添加C7,在高达5的C5b - 7/囊泡摩尔比下可获得定量结合。后一观察结果(a)与C5b - 7聚集和膜结合是竞争性事件的提议一致,并且(b)定义了光散射强度测量可以监测囊泡上C5b - 9组装而不受液相组装影响的条件。磷脂 - C5b - 8复合物中C8/C5b - 7的比例为0.97±0.12,最终复合物中C9/C5b - 8的最大比例为16.2±2.0。一个C9分子迅速与每个磷脂 - C5b - 8结合,随后其余C9分子的结合较慢。C9添加慢相的初始速度很容易被C9饱和,并且给出的活化能为37千卡/摩尔。这与在液相组装中类似过程测量的值相同。(摘要截断于250字)