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Hmx:一个在小鼠和果蝇发育中的神经系统中表达的进化保守的同源盒基因家族。

Hmx: an evolutionary conserved homeobox gene family expressed in the developing nervous system in mice and Drosophila.

作者信息

Wang W, Lo P, Frasch M, Lufkin T

机构信息

Brookdale Center for Developmental and Molecular Biology, Mount Sinai School of Medicine, One Gustave L. Levy Place, New York, NY 10029-6574, USA.

出版信息

Mech Dev. 2000 Dec;99(1-2):123-37. doi: 10.1016/s0925-4773(00)00488-3.

Abstract

Three homeobox genes, one from Drosophila melanogaster (Drosophila Hmx gene) and two from mouse (murine Hmx2 and Hmx3) were isolated and the full-length cDNAs and corresponding genomic structures were characterized. The striking homeodomain similarity encoded by these three genes to previously identified genes in sea urchin, chick and human, as well as the recently cloned murine Hmx1 gene, and the low homology to other homeobox genes indicate that the Hmx genes comprise a novel gene family. The widespread existence of Hmx genes in the animal kingdom suggests that this gene family is of ancient origin. Drosophila Hmx was mapped to the 90B5 region of Chromosome 3 and at early embryonic stages is primarily expressed in distinct areas of the neuroectoderm and subsets of neuroblasts in the developing fly brain. Later its expression continues in rostral areas of the brain in a segmented pattern, suggesting a putative role in the development of the Drosophila central nervous system. During evolution, mouse Hmx2 and Hmx3 may have retained a primary function in central nervous system development as suggested by their expression in the postmitotic cells of the neural tube, as well as in the hypothalamus, the mesencephalon, metencephalon and discrete regions in the myelencephalon during embryogenesis. Hmx1 has diverged from other Hmx members by its expression in the dorsal root, sympathetic and vagal nerve (X) ganglia. Aside from their expression in the developing nervous system, all three Hmx genes display expression in sensory organ development, and in the adult uterus. Hmx2 and Hmx3 show identical expression in the otic vesicle, whereas Hmx1 is strongly expressed in the developing eye. Transgenic mouse lines were generated to examine the DNA regulatory elements controlling Hmx2 and Hmx3. Transgenic constructs spanning more than 31 kb of genomic DNA gave reproducible expression patterns in the developing central and peripheral nervous systems, eye, ear and other tissues, yet failed to fully recapitulate the endogenous expression pattern of either Hmx2 or Hmx3, suggesting both the presence and absence of certain critical enhancers in the transgenes, or the requirement of proximal enhancers to work synergistically.

摘要

我们分离出了三个同源异型框基因,一个来自黑腹果蝇(果蝇Hmx基因),两个来自小鼠(鼠Hmx2和Hmx3),并对其全长cDNA和相应的基因组结构进行了表征。这三个基因编码的同源异型结构域与海胆、鸡和人类中先前鉴定的基因,以及最近克隆的鼠Hmx1基因具有显著的相似性,而与其他同源异型框基因的同源性较低,这表明Hmx基因构成了一个新的基因家族。Hmx基因在动物界的广泛存在表明这个基因家族起源古老。果蝇Hmx被定位到3号染色体的90B5区域,在胚胎早期主要在发育中的果蝇大脑神经外胚层的不同区域和成神经细胞亚群中表达。后来,其表达在大脑的前部区域以分段模式持续,提示其在果蝇中枢神经系统发育中可能发挥作用。在进化过程中,小鼠Hmx2和Hmx3可能在中枢神经系统发育中保留了主要功能,这从它们在神经管的有丝分裂后细胞中,以及在胚胎发生过程中的下丘脑、中脑、后脑和延髓的离散区域中的表达可以看出。Hmx1通过在背根、交感神经和迷走神经(X)神经节中的表达与其他Hmx成员有所不同。除了在发育中的神经系统中表达外,所有三个Hmx基因在感觉器官发育和成年子宫中也有表达。Hmx2和Hmx3在耳囊中表达相同,而Hmx1在发育中的眼睛中强烈表达。我们构建了转基因小鼠品系来研究控制Hmx2和Hmx3的DNA调控元件。跨越超过31 kb基因组DNA的转基因构建体在发育中的中枢和外周神经系统、眼睛、耳朵和其他组织中产生了可重复的表达模式,但未能完全重现Hmx2或Hmx3的内源性表达模式,这表明转基因中既存在某些关键增强子,也缺失某些关键增强子,或者近端增强子需要协同作用。

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