Takahashi S, Fukuoka Y, Moriwaki K, Okuda T, Tachibana T, Natsuume-Sakai S, Takahashi M
Immunogenetics. 1984;19(6):493-501. doi: 10.1007/BF00403440.
Complement C2 was isolated from 17 mouse strains by immunoprecipitation and sodium dodecyl sulfate-polyacrylamide gel electrophoresis and examined for structural polymorphism by using micro-peptide mapping. By comparing the peptide maps of tryptic digest of C2 from various strains, two allotypic variations were detected. B10 and 14 other mouse strains demonstrated C2.1 type, while a wild mouse line (M.Mol-Ohm) and one B10 congenic strain, B10.MOL.OHM, which carries the H-2 derived from M.Mol-Ohm, demonstrated C2.2 type. (B10 X B10.MOL.OHM)F1 demonstrated codominantly expressed C2 type (C2.1.2). Desialation of mouse C2 did not abolish the observed variation of mouse C2. It is concluded that an H-2-linked codominant locus controls the structure of mouse complement C2, further confirming the extensive homology of the major histocompatibility complex among higher vertebrate species.
通过免疫沉淀和十二烷基硫酸钠-聚丙烯酰胺凝胶电泳从17种小鼠品系中分离出补体C2,并使用微肽图谱分析其结构多态性。通过比较不同品系C2胰蛋白酶消化产物的肽图谱,检测到两种同种异型变异。B10和其他14种小鼠品系表现为C2.1型,而一个野生小鼠品系(M.Mol-Ohm)和一个携带源自M.Mol-Ohm的H-2的B10同源品系B10.MOL.OHM表现为C2.2型。(B10×B10.MOL.OHM)F1表现为共显性表达的C2型(C2.1.2)。小鼠C2的去唾液酸化并未消除观察到的小鼠C2变异。得出结论,一个与H-2连锁的共显性基因座控制小鼠补体C2的结构,进一步证实了高等脊椎动物物种主要组织相容性复合体的广泛同源性。