Li I C, Daniel W L
Biochem Genet. 1976 Dec;14(11-12):933-52. doi: 10.1007/BF00485126.
Two closely linked regulatory genes have been reported to control activity levels of beta-galactosidases in murine tissues. The specific effects of these genes on murine glycolipid metabolism have not been elucidated. A/HeJ kidney 4-methylumbelliferyl-beta-galactosidase exhibited lower thermostability than the corresponding C57BL/6J and SWR/J enzymes. This altered response to heat segregated with the Bgsh allele among progeny derived from backcrosses of F1 (A/HeJ; SWR/J) mice to the respective parental strains. Restriction of the heat-sensitive A/HeJ beta-galactosidase to kidney tissue suggests that it is not determined by the Bgs locus, since the latter appears to be expressed in all tissues. More likely, the Bgs region of chromosome 9 contains a gene cluster consisting of a number of regulatory and structural loci. The proposed structural genes share affinity for the artificial substrates commonly employed for their assay but may differ in their relative affinities for glycosphingolipid substrates. Presence of the Bgsh allele results in an increase of kidney GM1-ganglioside-beta-galactosidase; however, galactosylceramide-beta-galactosidase appears unaffected by this allele.
据报道,两个紧密相连的调控基因可控制小鼠组织中β-半乳糖苷酶的活性水平。这些基因对小鼠糖脂代谢的具体影响尚未阐明。A/HeJ小鼠肾脏的4-甲基伞形酮基-β-半乳糖苷酶的热稳定性低于相应的C57BL/6J和SWR/J酶。在F1(A/HeJ;SWR/J)小鼠与各自亲本品系回交产生的后代中,这种对热的改变反应与Bgsh等位基因相关。热敏感的A/HeJβ-半乳糖苷酶在肾脏组织中的局限性表明,它不是由Bgs基因座决定的,因为后者似乎在所有组织中都有表达。更有可能的是,9号染色体的Bgs区域包含一个由许多调控和结构基因座组成的基因簇。所提出的结构基因对通常用于其检测的人工底物具有亲和力,但它们对糖鞘脂底物的相对亲和力可能不同。Bgsh等位基因的存在会导致肾脏GM1-神经节苷脂-β-半乳糖苷酶增加;然而,半乳糖基神经酰胺-β-半乳糖苷酶似乎不受该等位基因的影响。