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mafB/kr基因在鸟类和小鼠中的表达模式表明,kreisler表型并不代表无效突变体。

The expression pattern of the mafB/kr gene in birds and mice reveals that the kreisler phenotype does not represent a null mutant.

作者信息

Eichmann A, Grapin-Botton A, Kelly L, Graf T, Le Douarin N M, Sieweke M

机构信息

Institut d'Embryologie Cellulaire et Moléculaire du CNRS et du Collège de France, Nogent-sur-Marne.

出版信息

Mech Dev. 1997 Jul;65(1-2):111-22. doi: 10.1016/s0925-4773(97)00063-4.

Abstract

The recessive mouse mutation kreisler affects hindbrain segmentation and inner ear development in homozygous mice. The mouse gene affected by the mutation was found to encode a basic domain leucine-zipper (bZIP)-type transcription factor of the Maf-family named kr (Cordes, S.P. and Barsh, G.S. (1994) Cell 79, 1025-1034). The avian bZIP transcription factor mafB, which shows high homology to kr, has been identified as an interaction partner of c-Ets 1 (Sieweke, M.H., Tekotte, M.H., Frampton, J. and Graf, T. (1996) Cell 85, 49-60). Here we demonstrate by Southern blot analysis that mafB is the avian homologue of kr, and present a detailed pattern of its expression during avian and murine embryonic development. Consistent with the kreisler phenotype, mafB is expressed in avians in the tissues which are affected by the mouse mutation: rhombomeres 5 and 6 (r5 and r6) and the neural crest derived from these rhombomeres. However, our analysis reveals a variety of additional expression sites: mafB/kr expression persists in vestibular and acoustic nuclei and is also observed in differentiating neurons of the spinal cord and brain stem. Restricted expression sites are found in the mesonephros, the perichondrium, and in the hemopoietic system. Since these expression sites are conserved between mouse and chicken we reexamined homozygous kreisler mice for unrevealed phenotypes in the hemopoietic system. However, peritoneal macrophages from homozygous kreisler mice were found to be functionally normal and still expressed mafB/kr. Other adult tissues examined from homozygous kreisler mice had also not lost mafB/kr expression. Our results thus indicate that the kreisler mutation involves a tissue specific gene inactivation and suggest additional roles for mafB/kr in later developmental and differentiation processes that are not revealed by the mutation.

摘要

隐性小鼠突变kreisler会影响纯合小鼠的后脑分段和内耳发育。发现受该突变影响的小鼠基因编码一种Maf家族的碱性结构域亮氨酸拉链(bZIP)型转录因子,名为kr(科德斯,S.P.和巴什,G.S.(1994年)《细胞》79卷,1025 - 1034页)。与kr具有高度同源性的禽类bZIP转录因子mafB,已被鉴定为c - Ets 1的相互作用伙伴(西韦克,M.H.,特科特,M.H.,弗兰普顿,J.和格拉夫,T.(1996年)《细胞》85卷,49 - 60页)。在此,我们通过Southern印迹分析证明mafB是kr的禽类同源物,并呈现其在禽类和鼠类发育过程中的详细表达模式。与kreisler表型一致,mafB在禽类中表达于受小鼠突变影响的组织:菱脑节5和6(r5和r6)以及源自这些菱脑节的神经嵴。然而,我们的分析揭示了多种其他表达位点:mafB/kr表达在前庭核和听神经核中持续存在,并且在脊髓和脑干的分化神经元中也可观察到。在中肾、软骨膜和造血系统中发现了受限的表达位点。由于这些表达位点在小鼠和鸡之间是保守的,我们重新检查了纯合kreisler小鼠造血系统中未被揭示的表型。然而,发现纯合kreisler小鼠的腹腔巨噬细胞功能正常且仍表达mafB/kr。从纯合kreisler小鼠检查的其他成年组织也未丧失mafB/kr表达。因此,我们的结果表明kreisler突变涉及组织特异性基因失活,并提示mafB/kr在后期发育和分化过程中具有未被该突变揭示的其他作用。

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