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首页> 外文期刊>Development >Dlx5 regulates regional development of the branchial arches and sensory capsules.
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Dlx5 regulates regional development of the branchial arches and sensory capsules.

机译:Dlx5调节branch弓和感觉胶囊的区域发展。

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We report the generation and analysis of mice homozygous for a targeted deletion of the Dlx5 homeobox gene. Dlx5 mutant mice have multiple defects in craniofacial structures, including their ears, noses, mandibles and calvaria, and die shortly after birth. A subset (28%) exhibit exencephaly. Ectodermal expression of Dlx5 is required for the development of olfactory and otic placode-derived epithelia and surrounding capsules. The nasal capsules are hypoplastic (e.g. lacking turbinates) and, in most cases, the right side is more severely affected than the left. Dorsal otic vesicle derivatives (e. g. semicircular canals and endolymphatic duct) and the surrounding capsule, are more severely affected than ventral (cochlear) structures. Dlx5 is also required in mandibular arch ectomesenchyme, as the proximal mandibular arch skeleton is dysmorphic. Dlx5 may control craniofacial development in part through the regulation of the goosecoid homeobox gene. goosecoid expression is greatly reduced in Dlx5 mutants, and both goosecoid and Dlx5 mutants share a number of similar craniofacial malformations. Dlx5 may perform a general role in skeletal differentiation, as exemplified by hypomineralization within the calvaria. The distinct focal defects within the branchial arches of the Dlx1, Dlx2 and Dlx5 mutants, along with the nested expression of their RNAs, support a model in which these genes have both redundant and unique functions in the regulation of regional patterning of the craniofacial ectomesenchyme.
机译:我们报告了Dlx5同源框基因的靶向删除的纯合小鼠的生成和分析。 Dlx5突变小鼠的颅面结构(包括其耳朵,鼻子,下颌骨和颅盖)有多个缺陷,并且在出生后不久死亡。有一部分(28%)表现出运动能力。 Dlx5的外胚层表达是嗅觉和耳道上皮来源的上皮和周围胶囊的发育所必需的。鼻囊发育不全(例如缺乏鼻甲),并且在大多数情况下,右侧比左侧更严重。背耳小泡衍生物(例如半圆形管和淋巴管)和周围的囊比腹(耳蜗)结构受到更严重的影响。下颌弓外间充质也需要Dlx5,因为下颌弓近端骨骼畸形。 Dlx5可能部分通过调节鹅卵形同源盒基因来控制颅面发育。在Dlx5突变体中,goosecoid的表达大大降低,并且goosecoid和Dlx5突变体均共享许多相似的颅面畸形。 D1x5可能在骨骼分化中起一般作用,例如颅骨内的矿化作用不足。 Dlx1,Dlx2和Dlx5突变体的分支弓内明显的局灶性缺陷,以及其RNA的嵌套表达,支持了一种模型,其中这些基因在调节颅面外膜间充质的区域模式方面具有冗余和独特的功能。

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