首页> 美国卫生研究院文献>Journal of Developmental Biology >Yeast Gup1(2) Proteins Are Homologues of the Hedgehog Morphogens Acyltransferases HHAT(L): Facts and Implications
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Yeast Gup1(2) Proteins Are Homologues of the Hedgehog Morphogens Acyltransferases HHAT(L): Facts and Implications

机译:酵母Gup1(2)蛋白是刺猬蛋白原酰基转移酶HHAT(L)的同系物:事实和意义

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摘要

In multiple tissues, the Hedgehog secreted morphogen activates in the receiving cells a pathway involved in cell fate, proliferation and differentiation in the receiving cells. This pathway is particularly important during embryogenesis. The protein HHAT (Hedgehog O-acyltransferase) modifies Hh morphogens prior to their secretion, while HHATL (Hh O-acyltransferase-like) negatively regulates the pathway. HHAT and HHATL are homologous to Saccharomyces cerevisiae Gup2 and Gup1, respectively. In yeast, Gup1 is associated with a high number and diversity of biological functions, namely polarity establishment, secretory/endocytic pathway functionality, vacuole morphology and wall and membrane composition, structure and maintenance. Phenotypes underlying death, morphogenesis and differentiation are also included. Paracrine signalling, like the one promoted by the Hh pathway, has not been shown to occur in microbial communities, despite the fact that large aggregates of cells like biofilms or colonies behave as proto-tissues. Instead, these have been suggested to sense the population density through the secretion of quorum-sensing chemicals. This review focuses on Gup1/HHATL and Gup2/HHAT proteins. We review the functions and physiology associated with these proteins in yeasts and higher eukaryotes. We suggest standardisation of the presently chaotic Gup-related nomenclature, which includes KIAA117, c3orf3, RASP, Skinny, Sightless and Central Missing, in order to avoid the disclosure of otherwise unnoticed information.
机译:在多个组织中,刺猬蛋白分泌的形态发生素在接收细胞中激活了一条与接收细胞中细胞命运,增殖和分化有关的途径。该途径在胚胎发生过程中特别重要。蛋白质HHAT(刺猬O-酰基转移酶)在其分泌之前修饰Hh形态发生原,而HHATL(类似Hh O-酰基转移酶)则对该途径起负调控作用。 HHAT和HHATL分别与酿酒酵母Gup2和Gup1同源。在酵母中,Gup1与大量和多种生物学功能有关,即极性建立,分泌/内吞途径功能,液泡形态以及壁和膜组成,结构和维持。还包括潜在的死亡,形态发生和分化的表型。尽管通过Hh途径促进的旁分泌信号传递并未在微生物群落中发生,尽管事实是,像生物膜或菌落这样的大量细胞聚集体都可以作为原始组织。取而代之的是,有人建议通过分泌群体感应化学物质来感应人口密度。这篇综述着重于Gup1 / HHATL和Gup2 / HHAT蛋白。我们审查了酵母和高级真核生物中与这些蛋白质相关的功能和生理学。我们建议对当前混乱的Gup相关术语进行标准化,其中包括KIAA117,c3orf3,RASP,Skinny,Sightless和Central Missing,以避免泄露其他未注意的信息。

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