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单向Notch信号传导依赖于Delta的持续切割。

Unidirectional Notch signaling depends on continuous cleavage of Delta.

作者信息

Sapir Amir, Assa-Kunik Efrat, Tsruya Rachel, Schejter Eyal, Shilo Ben-Zion

机构信息

Department of Molecular Genetics, Weizmann Institute of Science, Rehovot 76100, Israel.

出版信息

Development. 2005 Jan;132(1):123-32. doi: 10.1242/dev.01546. Epub 2004 Dec 2.

Abstract

Unidirectional signaling from cells expressing Delta (Dl) to cells expressing Notch is a key feature of many developmental processes. We demonstrate that the Drosophila ADAM metalloprotease Kuzbanian-like (Kul) plays a key role in promoting this asymmetry. Kul cleaves Dl efficiently both in cell culture and in flies, and has previously been shown not to be necessary for Notch processing during signaling. In the absence of Kul in the developing wing, the level of Dl in cells that normally receive the signal is elevated, and subsequent alterations in the directionality of Notch signaling lead to prominent phenotypic defects. Proteolytic cleavage of Dl by Kul represents a general mechanism for refining and maintaining the asymmetric distribution of Dl, in cases where transcriptional repression of Dl expression does not suffice to eliminate Dl protein.

摘要

从表达Delta(Dl)的细胞向表达Notch的细胞进行单向信号传导是许多发育过程的关键特征。我们证明,果蝇ADAM金属蛋白酶类库兹班蛋白(Kul)在促进这种不对称性方面发挥着关键作用。Kul在细胞培养和果蝇体内均能有效切割Dl,并且先前已表明其在信号传导过程中对Notch加工并非必需。在发育中的翅膀中缺乏Kul时,正常接收信号的细胞中Dl的水平会升高,随后Notch信号传导方向性的改变会导致明显的表型缺陷。在Dl表达的转录抑制不足以消除Dl蛋白的情况下,Kul对Dl的蛋白水解切割是优化和维持Dl不对称分布的一般机制。

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