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采用奥卡姆剃刀方法研究刺猬蛋白的脂化作用及其在发育中的作用。

Taking the Occam's Razor Approach to Hedgehog Lipidation and Its Role in Development.

作者信息

Manikowski Dominique, Kastl Philipp, Grobe Kay

机构信息

Institute of Physiological Chemistry and Pathobiochemistry and Cells-in-Motion Cluster of Excellence, University of Münster, D-48149 Münster, Germany.

出版信息

J Dev Biol. 2018 Jan 30;6(1):3. doi: 10.3390/jdb6010003.

Abstract

All Hedgehog (Hh) proteins signal from producing cells to distant receiving cells despite being synthesized as N-and C-terminally lipidated, membrane-tethered molecules. To explain this paradoxical situation, over the past 15 years, several hypotheses have been postulated that tie directly into this property, such as Hh transport on cellular extensions called cytonemes or on secreted vesicles called lipophorins and exosomes. The alternative situation that tight membrane association merely serves to prevent unregulated Hh solubilization has been addressed by biochemical and structural studies suggesting Hh extraction from the membrane or proteolytic Hh release. While some of these models may act in different organisms, tissues or developmental programs, others may act together to specify Hh short- and long-range signaling in the same tissues. To test and rank these possibilities, we here review major models of Hh release and transport and hypothesize that the (bio)chemical and physical properties of firmly established, homologous, and functionally essential biochemical Hh modifications are adapted to specify and determine interdependent steps of Hh release, transport and signaling, while ruling out other steps. This is also described by the term "congruence", meaning that the logical combination of biochemical Hh modifications can reveal their true functional implications. This combined approach reveals potential links between models of Hh release and transport that were previously regarded as unrelated, thereby expanding our view of how Hhs can steer development in a simple, yet extremely versatile, manner.

摘要

尽管刺猬蛋白(Hh)在合成时是N端和C端均经脂化修饰的膜锚定分子,但所有Hh蛋白都能从产生细胞向远处的接收细胞发出信号。为了解释这种矛盾的情况,在过去的15年里,人们提出了几种直接与这种特性相关的假说,比如Hh在称为细胞线的细胞延伸结构上或在称为脂转运蛋白和外泌体的分泌囊泡上进行运输。紧密的膜结合仅仅是为了防止Hh不受调控地溶解这种另一种情况,已经通过生化和结构研究得到了解决,这些研究表明Hh可从膜上被提取或通过蛋白水解作用释放。虽然这些模型中的一些可能在不同的生物体、组织或发育程序中起作用,但其他模型可能共同作用,在同一组织中确定Hh的短程和长程信号传导。为了测试并排列这些可能性,我们在此回顾Hh释放和运输的主要模型,并假设已被牢固确立、具有同源性且在功能上必不可少的生化Hh修饰的(生物)化学和物理特性,是为了确定和决定Hh释放、运输和信号传导的相互依赖步骤,同时排除其他步骤。这也可用“一致性”一词来描述,意思是生化Hh修饰的逻辑组合可以揭示它们真正的功能含义。这种综合方法揭示了以前被认为不相关的Hh释放和运输模型之间的潜在联系,从而扩展了我们对Hh如何以一种简单但极其多样的方式引导发育的看法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/77c6/5875562/b8aef3ab452e/jdb-06-00003-g001.jpg

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