Blake T, Adya N, Kim C H, Oates A C, Zon L, Chitnis A, Weinstein B M, Liu P P
National Human Genome Research Institute, National Institutes of Health, Bethesda, MD 20892, USA.
Blood. 2000 Dec 15;96(13):4178-84.
Mammalian CBFB encodes a transcription factor (CBF beta) that in combination with CBF alpha 2 binds to specific DNA sequences and regulates expression of a number of hematopoietic genes. CBFB is associated with human leukemias through a chromosome 16 inversion and is essential for definitive hematopoiesis during mouse embryo development. We have isolated a zebrafish cbfb complementary DNA (cDNA) clone from a zebrafish kidney cDNA library. This cbfb is highly homologous to human and mouse CBFB/Cbfb genes at both the DNA and protein level. In biochemical analyses, cbfbeta binds to human CBF alpha 2 and enhances its DNA binding. During zebrafish development, cbfb is expressed in the lateral plate mesoderm at tail bud stage and in the intermediate cell mass (ICM, the location of embryonic hematopoiesis) between the 21- to 26-somite stages. The cbfb is also expressed in Rohon-Beard cells, cranial nerve ganglia, hindbrain, retina, branchial arches, jaw, and fin buds. Expression of cbfb is decreased or absent in the ICM and Rohon-Beard cells in some hematopoietic mutants and is unaffected in others. We have also analyzed the expression of scl and gata-1 in the same hematopoietic mutants to ascertain the relative order of these transcription factors to cbfb in zebrafish hematopoiesis. Our results indicate that cbfb is expressed in early hematopoietic progenitors and that its expression pattern in the hematopoietic mutants is similar to that of scl. (Blood. 2000;96:4178-4184)
哺乳动物的CBFB编码一种转录因子(CBFβ),它与CBFα2结合,识别特定的DNA序列,并调控许多造血基因的表达。CBFB通过16号染色体倒位与人类白血病相关,并且在小鼠胚胎发育过程中对确定性造血至关重要。我们从斑马鱼肾脏cDNA文库中分离出一个斑马鱼cbfb互补DNA(cDNA)克隆。该cbfb在DNA和蛋白质水平上都与人类和小鼠的CBFB/Cbfb基因高度同源。在生化分析中,cbfβ与人类CBFα2结合并增强其DNA结合能力。在斑马鱼发育过程中,cbfb在尾芽期的侧板中胚层以及21至26体节期之间的中间细胞群(ICM,胚胎造血的位置)中表达。cbfb也在罗霍恩-比尔兹细胞、脑神经节、后脑、视网膜、鳃弓、颌骨和鳍芽中表达。在一些造血突变体中,cbfb在ICM和罗霍恩-比尔兹细胞中的表达降低或缺失,而在其他突变体中则不受影响。我们还分析了相同造血突变体中scl和gata-1的表达,以确定这些转录因子在斑马鱼造血过程中相对于cbfb的相对顺序。我们的结果表明,cbfb在早期造血祖细胞中表达,并且其在造血突变体中的表达模式与scl相似。(《血液》。2000年;96:4178 - 4184)