Yamamoto K, Migita S
J Biol Chem. 1983 Jul 10;258(13):7887-9.
Purified human C9 spontaneously polymerizes upon prolonged incubation at 37 degrees C, and a fraction of these C9 polymers becomes resistant to dissociation by sodium dodecyl sulfate (SDS) and reducing agents. We examined possible mechanisms for this spontaneous covalent linking of C9. The following results are consistent with the conclusion that the formation of the covalently linked C9 polymer involves disulfide linking. 1) In addition to the SDS/dithiothreitol (DTT)-resistant C9 polymer (Mr = 950,000), disulfide-linked C9 dimers and trimers were formed upon incubation of C9 at 37 degrees C for 64 h. 2) The C9 polymer formed upon incubation at 37 degrees C for 64 h was resistant to dissociation by 6 M guanidine hydrochloride, 20 mM DTT but was dissociated by 6 M guanidine thiocyanate alone, yielding disulfide-linked C9 oligomers. 3) The formation of the SDS/DTT-resistant C9 polymer was completely inhibited by 1 mM iodoacetamide and 5,5'-dithiobis-(2-nitrobenzoic acid) (DTNB), while DTNB enhanced the formation of disulfide-linked C9 oligomers. 4) A significant amount of free sulfhydryl group was detected in the polymerized C9 samples with various SH-specific reagents, though native C9 reacted with none of these reagents. In addition, inhibition by 1 mM iodoacetamide of C9 disulfide linking inhibited the self-association of C9 as analyzed by gel filtration on TSK-G4000 SW, whereas enhancement by 1mM DTNB of C9 disulfide linking enhanced C9 self-association. Thus, these results indicate that C9 disulfide linking that occurs upon C9 polymerization is an intrinsic property of C9 which is of importance in the formation of the stable C9 polymer structure.
纯化的人补体成分9(C9)在37℃长时间孵育后会自发聚合,并且这些C9聚合物中的一部分对十二烷基硫酸钠(SDS)和还原剂的解离具有抗性。我们研究了C9这种自发共价连接的可能机制。以下结果与共价连接的C9聚合物形成涉及二硫键连接的结论一致。1)除了抗SDS/二硫苏糖醇(DTT)的C9聚合物(Mr = 950,000)外,C9在37℃孵育64小时后还形成了二硫键连接的C9二聚体和三聚体。2)在37℃孵育64小时形成的C9聚合物对6M盐酸胍、20mM DTT的解离具有抗性,但仅6M硫氰酸胍就能使其解离,产生二硫键连接的C9寡聚体。3)1mM碘乙酰胺和5,5'-二硫代双(2-硝基苯甲酸)(DTNB)完全抑制了抗SDS/DTT的C9聚合物的形成,而DTNB增强了二硫键连接的C9寡聚体的形成。4)用各种SH特异性试剂在聚合的C9样品中检测到大量游离巯基,而天然C9与这些试剂均无反应。此外,1mM碘乙酰胺对C9二硫键连接的抑制作用抑制了C9通过TSK-G4000 SW凝胶过滤分析的自聚集,而1mM DTNB对C9二硫键连接的增强作用增强了C9的自聚集。因此,这些结果表明C9聚合时发生的C9二硫键连接是C9的固有特性,在稳定的C9聚合物结构形成中具有重要意义。