A Residual N-Terminal Peptide Enhances Signaling of Depalmitoylated Hedgehog to the Patched Receptor

IF 2.2 Q3 DEVELOPMENTAL BIOLOGY Journal of Developmental Biology Pub Date : 2024-04-09 DOI:10.3390/jdb12020011
S.F. Ehlers, D. Manikowski, Georg Steffes, K. Ehring, F. Gude, K. Grobe
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Abstract

During their biosynthesis, Sonic hedgehog (Shh) morphogens are covalently modified by cholesterol at the C-terminus and palmitate at the N-terminus. Although both lipids initially anchor Shh to the plasma membrane of producing cells, it later translocates to the extracellular compartment to direct developmental fates in cells expressing the Patched (Ptch) receptor. Possible release mechanisms for dually lipidated Hh/Shh into the extracellular compartment are currently under intense debate. In this paper, we describe the serum-dependent conversion of the dually lipidated cellular precursor into a soluble cholesteroylated variant (ShhC) during its release. Although ShhC is formed in a Dispatched- and Scube2-dependent manner, suggesting the physiological relevance of the protein, the depalmitoylation of ShhC during release is inconsistent with the previously postulated function of N-palmitate in Ptch receptor binding and signaling. Therefore, we analyzed the potency of ShhC to induce Ptch-controlled target cell transcription and differentiation in Hh-sensitive reporter cells and in the Drosophila eye. In both experimental systems, we found that ShhC was highly bioactive despite the absence of the N-palmitate. We also found that the artificial removal of N-terminal peptides longer than eight amino acids inactivated the depalmitoylated soluble proteins in vitro and in the developing Drosophila eye. These results demonstrate that N-depalmitoylated ShhC requires an N-peptide of a defined minimum length for its signaling function to Ptch.
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残留的 N 端肽增强了去棕榈酰化刺猬蛋白对 Patched 受体的信号传递
在生物合成过程中,音速刺猬(Shh)形态发生器的 C 端和 N 端分别被胆固醇和棕榈酸酯共价修饰。虽然这两种脂质最初都将Shh固定在产生细胞的质膜上,但它随后会转移到细胞外,指导表达Patched(Ptch)受体的细胞的发育命运。Hh/Shh 双重脂质化进入细胞外的可能释放机制目前还在激烈争论中。在本文中,我们描述了双脂化细胞前体在释放过程中依靠血清转化为可溶性胆固醇酰化变体(ShhC)的过程。尽管 ShhC 是以依赖于 Dispatched 和 Scube2 的方式形成的,这表明了该蛋白的生理相关性,但释放过程中 ShhC 的去棕榈酰化与之前推测的 N-棕榈酸酯在 Ptch 受体结合和信号传导中的功能不一致。因此,我们分析了 ShhC 在 Hh 敏感报告细胞和果蝇眼睛中诱导 Ptch 控制的靶细胞转录和分化的效力。在这两个实验系统中,我们发现尽管缺少 N-棕榈酸酯,ShhC 仍具有很强的生物活性。我们还发现,人工去除长于八个氨基酸的 N 端肽后,去棕榈酰化的可溶性蛋白在体外和果蝇眼球发育过程中都失活了。这些结果表明,N-去棕榈酰化的 ShhC 需要一个确定的最小长度的 N-肽才能对 Ptch 发挥信号功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Developmental Biology
Journal of Developmental Biology Biochemistry, Genetics and Molecular Biology-Developmental Biology
CiteScore
4.10
自引率
18.50%
发文量
44
审稿时长
11 weeks
期刊介绍: The Journal of Developmental Biology (ISSN 2221-3759) is an international, peer-reviewed, quick-refereeing, open access journal, which publishes reviews, research papers and communications on the development of multicellular organisms at the molecule, cell, tissue, organ and whole organism levels. Our aim is to encourage researchers to effortlessly publish their new findings or concepts rapidly in an open access medium, overseen by their peers. There is no restriction on the length of the papers; the full experimental details must be provided so that the results can be reproduced. Electronic files regarding the full details of the experimental procedure, if unable to be published in a normal way, can be deposited as supplementary material. Journal of Developmental Biology focuses on: -Development mechanisms and genetics -Cell differentiation -Embryonal development -Tissue/organism growth -Metamorphosis and regeneration of the organisms. It involves many biological fields, such as Molecular biology, Genetics, Physiology, Cell biology, Anatomy, Embryology, Cancer research, Neurobiology, Immunology, Ecology, Evolutionary biology.
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