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脂蛋白相关的 hedgehog 及其非固醇修饰形式在果蝇和哺乳动物中的分泌和信号转导活性。

Secretion and signaling activities of lipoprotein-associated hedgehog and non-sterol-modified hedgehog in flies and mammals.

机构信息

Max-Planck Institute of Molecular Cell Biology and Genetics, Dresden, Germany.

出版信息

PLoS Biol. 2013;11(3):e1001505. doi: 10.1371/journal.pbio.1001505. Epub 2013 Mar 12.

Abstract

Hedgehog (Hh) proteins control animal development and tissue homeostasis. They activate gene expression by regulating processing, stability, and activation of Gli/Cubitus interruptus (Ci) transcription factors. Hh proteins are secreted and spread through tissue, despite becoming covalently linked to sterol during processing. Multiple mechanisms have been proposed to release Hh proteins in distinct forms; in Drosophila, lipoproteins facilitate long-range Hh mobilization but also contain lipids that repress the pathway. Here, we show that mammalian lipoproteins have conserved roles in Sonic Hedgehog (Shh) release and pathway repression. We demonstrate that lipoprotein-associated forms of Hh and Shh specifically block lipoprotein-mediated pathway inhibition. We also identify a second conserved release form that is not sterol-modified and can be released independently of lipoproteins (Hh-N*/Shh-N*). Lipoprotein-associated Hh/Shh and Hh-N*/Shh-N* have complementary and synergistic functions. In Drosophila wing imaginal discs, lipoprotein-associated Hh increases the amount of full-length Ci, but is insufficient for target gene activation. However, small amounts of non-sterol-modified Hh synergize with lipoprotein-associated Hh to fully activate the pathway and allow target gene expression. The existence of Hh secretion forms with distinct signaling activities suggests a novel mechanism for generating a diversity of Hh responses.

摘要

刺猬 (Hh) 蛋白控制动物的发育和组织内稳态。它们通过调节 Gli/Cubitus interruptus (Ci) 转录因子的加工、稳定性和激活来激活基因表达。尽管在加工过程中与固醇共价连接,但 Hh 蛋白仍通过组织分泌和扩散。已经提出了多种机制来以不同形式释放 Hh 蛋白;在果蝇中,脂蛋白促进长距离 Hh 动员,但也含有抑制途径的脂质。在这里,我们表明哺乳动物脂蛋白在 Sonic Hedgehog (Shh) 释放和途径抑制中具有保守作用。我们证明了脂蛋白相关形式的 Hh 和 Shh 特异性地阻断脂蛋白介导的途径抑制。我们还鉴定了第二种不经过固醇修饰的保守释放形式,它可以独立于脂蛋白释放(Hh-N*/Shh-N*)。脂蛋白相关的 Hh/Shh 和 Hh-N*/Shh-N*具有互补和协同作用。在果蝇翅 imaginal 盘,脂蛋白相关的 Hh 增加全长 Ci 的数量,但不足以激活靶基因。然而,少量非固醇修饰的 Hh 与脂蛋白相关的 Hh 协同作用,可完全激活途径并允许靶基因表达。具有不同信号活性的 Hh 分泌形式的存在表明产生多种 Hh 反应的新机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a3c/3595218/2b73e091fb22/pbio.1001505.g001.jpg

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