Parkes C, DiScipio R G, Kerr M A, Prohaska R
Biochem J. 1981 Mar 1;193(3):963-70. doi: 10.1042/bj1930963.
Complement component C3 prepared by the method of Tack & Prahl [(1976) Biochemistry 15, 4513-4521] was found to contain the following trace contaminants: C3b, haemolytically inactive C3 with intact alpha- and beta-chains (C3u) and degraded C3 (apparent mol.wt. 140000) with an intact beta-chain but with a fragmented alpha-chain. The proportion of C3u in the C3 is increased on standing and by freezing and thawing. These contaminants could be separated from each other and from native C3 by chromatography on sulphated Sepharose. They have been characterized by their susceptibility to C3b inactivator in the presence of beta 1H, their ability to be cleaved by C3 convertase and their ability to form alternative-pathway C3 convertase in solution. Incubation of C3b or C3u with beta 1H and C3b inactivator resulted in cleavage of the C3 species; the alpha'-chain of C3b was cleaved to fragments of apparent mol.wts. 67000 and 43000, the alpha-chain of C3u was cleaved to fragments of apparent mol.wt. 75000 and 43000. Native C3 and degraded C3 were unaffected by incubation with beta 1H and C3b inactivator. C3u, unlike C3, was not cleaved to C3b by the classical- or alternative-pathway C3 convertase in solution. When C3b or C3 was incubated with factors B and D, forming C3 convertase, the initial rate of factor-B cleavage was several order of magnitude lower in the presence of C3 than in the presence of C3b. The slow rate observed for C3 could be decreased by preincubation with beta 1H and C3b inactivator or by rechromatography of the C3. The degraded C3 did not support factor-B cleavage by factor D.
采用塔克和普拉尔的方法[(1976年,《生物化学》15卷,4513 - 4521页)]制备的补体成分C3被发现含有以下微量污染物:C3b、具有完整α链和β链的无溶血活性的C3(C3u)以及降解的C3(表观分子量140000),其β链完整但α链片段化。C3中C3u的比例在静置、冻融后会增加。这些污染物可通过硫酸化琼脂糖凝胶色谱法彼此分离,并与天然C3分离。它们的特性通过在β1H存在下对C3b灭活剂的敏感性、被C3转化酶裂解的能力以及在溶液中形成替代途径C3转化酶的能力来表征。将C3b或C3u与β1H和C3b灭活剂一起孵育会导致C3成分的裂解;C3b的α'链被裂解为表观分子量为67000和43000的片段,C3u的α链被裂解为表观分子量为75000和43000的片段。天然C3和降解的C3在与β1H和C3b灭活剂孵育时不受影响。与C3不同,C3u在溶液中不会被经典途径或替代途径的C3转化酶裂解为C3b。当C3b或C3与因子B和D一起孵育形成C3转化酶时,在C3存在下因子B裂解的初始速率比在C3b存在下低几个数量级。通过与β1H和C3b灭活剂预孵育或对C3进行再色谱分离,可以降低观察到的C3的缓慢裂解速率。降解的C3不支持因子D对因子B的裂解。