Good P J, Richter K, Dawid I B
Laboratory of Molecular Genetics, National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, MD 20892.
Proc Natl Acad Sci U S A. 1990 Dec;87(23):9088-92. doi: 10.1073/pnas.87.23.9088.
We have previously described the isolation of several genes expressed exclusively in the nervous system of adult Xenopus laevis and activated in the embryo shortly after neural induction. The sequence of one of these cDNAs, 24-15, identifies the corresponding protein as an isotype of the beta subunit of Na+,K(+)-ATPase [ATP phosphohydrolase (Na+/K(+)-transporting); EC 3.6.1.37]. This form is distinct from the previously described beta 1 subunit of Xenopus, and the protein sequence comparison suggests that it is not the frog homolog of the mammalian beta 2 subunit; therefore, we refer to the 24-15 protein as the beta 3 subunit of Na+,K(+)-ATPase of Xenopus. Antisera directed against beta 3-subunit fusion protein detected a protein in adult brain extracts with the size and properties expected for a Na+,K(+)-ATPase beta subunit. In Xenopus the beta 1 and beta 3 subunits are expressed as maternal mRNAs at similar levels; during embryogenesis rapid accumulation of beta 3 mRNA begins at stage 14 (early neurula), and the rapid accumulation of beta 1 mRNA begins at stage 23/24. In situ hybridization of antisense RNA probes to tadpole brain sections indicates that beta 3 subunit is expressed throughout the developing brain. We suggest that beta 3 is a major Na+,K(+)-ATPase beta subunit present during early nervous system development in the frog.
我们之前描述过从成年非洲爪蟾神经系统中分离出几个仅在该系统中表达且在神经诱导后不久在胚胎中被激活的基因。其中一个cDNA(24 - 15)的序列表明其对应的蛋白质是Na⁺,K⁺ - ATP酶[ATP磷酸水解酶(Na⁺/K⁺转运);EC 3.6.1.37]β亚基的一种同种型。这种形式与之前描述的非洲爪蟾β1亚基不同,蛋白质序列比较表明它不是哺乳动物β2亚基的蛙类同源物;因此,我们将24 - 15蛋白称为非洲爪蟾Na⁺,K⁺ - ATP酶的β3亚基。针对β3亚基融合蛋白的抗血清在成年脑提取物中检测到一种具有Na⁺,K⁺ - ATP酶β亚基预期大小和特性的蛋白质。在非洲爪蟾中,β1和β3亚基以相似水平作为母源mRNA表达;在胚胎发育过程中,β3 mRNA在第14阶段(早期神经胚)开始快速积累,而β1 mRNA在第23/24阶段开始快速积累。将反义RNA探针与蝌蚪脑切片进行原位杂交表明,β3亚基在整个发育中的脑中都有表达。我们认为β3是蛙类早期神经系统发育过程中存在的主要Na⁺,K⁺ - ATP酶β亚基。