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果蝇Toll-Dorsal信号通路中的线性信号传导:激活的Pelle激酶决定了基因表达的所有阈值输出,而bHLH蛋白Twist决定了其中一部分。

Linear signaling in the Toll-Dorsal pathway of Drosophila: activated Pelle kinase specifies all threshold outputs of gene expression while the bHLH protein Twist specifies a subset.

作者信息

Stathopoulos Angelike, Levine Michael

机构信息

Department of Molecular and Cell Biology, Division of Genetics and Development, 401 Barker Hall, University of California, Berkeley, CA 94720, USA.

出版信息

Development. 2002 Jul;129(14):3411-9. doi: 10.1242/dev.129.14.3411.

Abstract

Differential activation of the Toll receptor leads to the formation of a broad Dorsal nuclear gradient that specifies at least three patterning thresholds of gene activity along the dorsoventral axis of precellular embryos. We investigate the activities of the Pelle kinase and Twist basic helix-loop-helix (bHLH) transcription factor in transducing Toll signaling. Pelle functions downstream of Toll to release Dorsal from the Cactus inhibitor. Twist is an immediate-early gene that is activated upon entry of Dorsal into nuclei. Transgenes misexpressing Pelle and Twist were introduced into different mutant backgrounds and the patterning activities were visualized using various target genes that respond to different thresholds of Toll-Dorsal signaling. These studies suggest that an anteroposterior gradient of Pelle kinase activity is sufficient to generate all known Toll-Dorsal patterning thresholds and that Twist can function as a gradient morphogen to establish at least two distinct dorsoventral patterning thresholds. We discuss how the Dorsal gradient system can be modified during metazoan evolution and conclude that Dorsal-Twist interactions are distinct from the interplay between Bicoid and Hunchback, which pattern the anteroposterior axis.

摘要

Toll受体的差异激活导致形成一个广泛的背核梯度,该梯度确定了沿细胞前胚胎背腹轴的至少三个基因活性模式阈值。我们研究了Pelle激酶和Twist基本螺旋-环-螺旋(bHLH)转录因子在转导Toll信号中的活性。Pelle在Toll下游发挥作用,从仙人掌抑制剂中释放背蛋白。Twist是一个立即早期基因,在背蛋白进入细胞核时被激活。将错误表达Pelle和Twist的转基因导入不同的突变背景中,并使用响应不同Toll-背蛋白信号阈值的各种靶基因来观察模式活性。这些研究表明,Pelle激酶活性的前后梯度足以产生所有已知的Toll-背蛋白模式阈值,并且Twist可以作为梯度形态发生素来建立至少两个不同的背腹模式阈值。我们讨论了在多细胞动物进化过程中背蛋白梯度系统如何被修饰,并得出结论,背蛋白- Twist相互作用不同于沿前后轴进行模式化的Bicoid和驼背之间的相互作用。

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