Dizik M, Elliott R W
Biochem Genet. 1978 Apr;16(3-4):247-60. doi: 10.1007/BF00484082.
We have previously reported on a mouse liver-specific genetic polymorphism associated with altered sialylation of lysosomal alpha-mannosidase. A second electrophoretic polymorphism for liver lysosomal alpha-mannosidase has now been found and characterized. This variation, between SWR/J and SM/JCv inbred mice, is determined by a single genetic locus (Map-2) on chromosome 17 and appears to be the result of further differences in sialylation of the lysosomal enzyme. The Map-2 gene appears to affect the processing of liver, spleen, and lung lysosomal alpha-mannosidase, whereas the Map-1 gene appears to be specific to the processing of liver lysosomal alpha-mannosidase (Dizik and Elliott, 1977). The more negatively charged electrophoretic liver phenotype (MA-A) characteristic of the SM/JCv strain is recessive to the phenotype (MA-B) characteristic of the SWR/J strain. In contrast, at the Map-1 locus, the more negatively charged phenotype is dominant. The electrophoretic pattern of development of the liver enzyme from SM/JCv mice is described.
我们之前曾报道过一种与溶酶体α-甘露糖苷酶唾液酸化改变相关的小鼠肝脏特异性遗传多态性。现在已经发现并鉴定出肝脏溶酶体α-甘露糖苷酶的第二种电泳多态性。这种SWR/J和SM/JCv近交系小鼠之间的差异,由17号染色体上的一个单一基因座(Map-2)决定,似乎是溶酶体酶唾液酸化进一步差异的结果。Map-2基因似乎影响肝脏、脾脏和肺溶酶体α-甘露糖苷酶的加工过程,而Map-1基因似乎对肝脏溶酶体α-甘露糖苷酶的加工过程具有特异性(迪齐克和埃利奥特,1977年)。SM/JCv品系具有的带更多负电荷的肝脏电泳表型(MA-A)相对于SWR/J品系的表型(MA-B)是隐性的。相比之下,在Map-1基因座,带更多负电荷的表型是显性的。本文描述了SM/JCv小鼠肝脏酶的电泳发育模式。