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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Dominant unc-37 mutations suppress the movement defect of a homeodomain mutation in unc-4, a neural specificity gene in Caenorhabditis elegans.
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Dominant unc-37 mutations suppress the movement defect of a homeodomain mutation in unc-4, a neural specificity gene in Caenorhabditis elegans.

机译:显性的unc-37突变抑制线虫秀丽隐杆线虫神经特异性基因unc-4中同源域突变的运动缺陷。

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The unc-4 gene of Caenorhabditis elegans encodes a homeodomain protein that defines synaptic input to ventral cord motor neurons. unc-4 mutants are unable to crawl backward because VA motor neurons are miswired with synaptic connections normally reserved for their sister cells, the VB motor neurons. These changes in connectivity are not accompanied by any visible effects upon neuronal morphology, which suggests that unc-4 regulates synaptic specificity but not axonal guidance or outgrowth. In an effort to identify other genes in the unc-4 pathway, we have devised a selection scheme for rare mutations that suppress the Unc-4 phenotype. We have isolated four, dominant, extragenic, allele-specific suppressors of unc-4(e2322ts), a temperature sensitive allele with a point mutation in the unc-4 homeodomain. Our data indicate that these suppressors are gain-of-function mutations in the previously identified unc-37 gene. We show that the loss-of-function mutation unc-37(e262) phenocopies the Unc-4 movement defect but does not prevent unc-4 expression or alter VA motor neuron morphology. These findings suggest that unc-37 functions with unc-4 to specify synaptic input to the VA motor neurons. We propose that unc-37 may be regulated by unc-4. Alternatively, unc-37 may encode a gene product that interacts with the unc-4 homeodomain.
机译:秀丽隐杆线虫的unc-4基因编码一个同源结构域蛋白,该蛋白定义了腹侧运动神经元的突触输入。 unc-4突变体无法向后爬行,因为VA运动神经元与通常为其姐妹细胞VB运动神经元保留的突触连接错误连接。连接性的这些变化不会对神经元形态产生任何可见的影响,这表明unc-4调节突触的特异性,但不调节轴突的指导或生长。为了确定unc-4途径中的其他基因,我们设计了一种抑制Unc-4表型的罕见突变选择方案。我们分离了unc-4(e2322ts)的四个主要的,外源的,等位基因特异性的抑制子,这是一种对温度敏感的等位基因,在unc-4同源域中具有点突变。我们的数据表明,这些抑制子是先前确定的unc-37基因中的功能获得性突变。我们显示功能丧失突变unc-37(e262)表型复制Unc-4运动缺陷,但不会阻止unc-4表达或改变VA运动神经元形态。这些发现表明,unc-37与unc-4一起发挥功能,以指定向VA运动神经元的突触输入。我们建议unc-37可能受unc-4调控。备选地,unc-37可以编码与unc-4同源结构域相互作用的基因产物。

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