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小鼠HOX基因家族的结构和功能组织类似于果蝇的同源异型基因。

The structural and functional organization of the murine HOX gene family resembles that of Drosophila homeotic genes.

作者信息

Duboule D, Dollé P

机构信息

Laboratoire de génétique moléculaire des eucaryotes du CNRS, Faculté de Médecine, Strasbourg, France.

出版信息

EMBO J. 1989 May;8(5):1497-505. doi: 10.1002/j.1460-2075.1989.tb03534.x.

Abstract

This paper reports the cloning of the fourth major murine homeogene complex, HOX-5. The partial characterization of this gene cluster revealed the presence of two novel genes (Hox-5.2, Hox-5.3) located at the 5' extremity of this complex. In situ hybridization experiments showed that these two genes are transcribed in very posterior domains during embryonic and foetal development. We also show that Hox-1.6, the gene located at the 3' most position in the HOX-1 complex, has a very anterior expression boundary during early development. These results clearly support the recently proposed hypothesis that the expression of murine Antp-like homeobox-containing genes along the antero-posterior developing body axis follows a positional hierarchy which reflects their respective physical positions within the HOX clusters, similar to that which is found for the Drosophila homeotic genes. Such a structural and functional organization is likely conserved in most vertebrates. Moreover, on the basis of sequence comparisons, we propose that the ordering of homeobox-containing genes within clusters has been conserved between Drosophila and the house mouse. Thus, very different body plans might be achieved, both in insects and vertebrates, by evolutionarily conserved gene networks possibly displaying similar regulatory interactions.

摘要

本文报道了小鼠第四大同源基因复合体HOX - 5的克隆。对该基因簇的部分特征分析揭示了位于该复合体5'末端的两个新基因(Hox - 5.2、Hox - 5.3)的存在。原位杂交实验表明,这两个基因在胚胎和胎儿发育期间在非常靠后的区域转录。我们还表明,位于HOX - 1复合体最3'端位置的基因Hox - 1.6在早期发育过程中有非常靠前的表达边界。这些结果清楚地支持了最近提出的假说,即小鼠含Antp样同源异型框基因沿前后发育体轴的表达遵循一种位置层次结构,该结构反映了它们在HOX簇内各自的物理位置,类似于果蝇同源异型基因的情况。这种结构和功能组织在大多数脊椎动物中可能是保守的。此外,基于序列比较,我们提出在果蝇和家鼠之间,簇内含同源异型框基因的排序是保守的。因此,昆虫和脊椎动物可能通过进化上保守的基因网络实现非常不同的身体结构,这些基因网络可能显示出相似的调控相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6d9/400980/f28ab0209837/emboj00129-0206-a.jpg

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