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果蝇的miti-mere基因是POU家族的成员之一,在神经发生过程中,它是RP2/同胞细胞系特化所必需的。

The Drosophila miti-mere gene, a member of the POU family, is required for the specification of the RP2/sibling lineage during neurogenesis.

作者信息

Bhat K M, Schedl P

机构信息

Department of Molecular Biology, Princeton University, New Jersey 08544.

出版信息

Development. 1994 Jun;120(6):1483-501. doi: 10.1242/dev.120.6.1483.

Abstract

The Drosophila POU gene miti-mere (previously known as pdm2) has a complex spatial and temporal pattern of expression during early development; initially it is expressed in gap-gene-like pattern, then in 14 stripes and finally in a subset of the cells in the developing CNS and PNS. To study the function of this gene during development, we generated a 'synthetic anti-morphic mutation' by expressing a truncated version of the miti protein from a constitutive hsp83 and an inducible hsp70 promoter. We show that these delta miti transgenes behave like classical antimorphic mutations. Using these dominant negative transgenes, together with deletions and a duplication for the gene, we show that miti is required during segmentation and neurogenesis. We have also used temperature-shift experiments with the hsp70 delta miti transgene to demonstrate that miti function in segmentation is distinct and separable from its function during neurogenesis. In segmentation, miti appears to be required in the specification of the segments A2 and A6. In the CNS, miti is required for the elaboration of the NB4-2-->GMC-1-->RP2/sib lineage. miti is initially required in this lineage to establish the identity of the parental ganglion mother cell, GMC-1. miti must then be down-regulated to allow the asymmetric division of GMC-1 into the RP2 and its sibling cell.

摘要

果蝇的POU基因miti-mere(以前称为pdm2)在早期发育过程中具有复杂的时空表达模式;最初它以类似间隙基因的模式表达,然后在14条带中表达,最后在发育中的中枢神经系统和外周神经系统的一部分细胞中表达。为了研究该基因在发育过程中的功能,我们通过从组成型hsp83和诱导型hsp70启动子表达miti蛋白的截短版本,产生了一种“合成反形态突变”。我们表明这些δmiti转基因表现得像经典的反形态突变。使用这些显性负性转基因,连同该基因的缺失和重复,我们表明miti在体节形成和神经发生过程中是必需的。我们还利用hsp70 δmiti转基因进行温度转换实验,以证明miti在体节形成中的功能与其在神经发生过程中的功能不同且可分离。在体节形成中,miti似乎在A2和A6节段的特化中是必需的。在中枢神经系统中,miti是NB4-2→GMC-1→RP2/姐妹细胞谱系发育所必需的。miti最初在这个谱系中是建立亲代神经节母细胞GMC-1身份所必需的。然后miti必须被下调,以允许GMC-1不对称分裂为RP2及其姐妹细胞。

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