Wnt生产和配送的物流。

2区 生物学 Q1 Biochemistry, Genetics and Molecular Biology Current Topics in Developmental Biology Pub Date : 2023-01-01 DOI:10.1016/bs.ctdb.2023.01.006
Ines Alvarez-Rodrigo, David Willnow, Jean-Paul Vincent
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引用次数: 2

摘要

wnt是一种分泌蛋白,控制干细胞的维持、细胞命运的决定以及发育和成人体内平衡过程中的生长。wnt携带翻译后修饰,这在任何其他分泌蛋白中都不存在:在生物合成过程中,wnt附加一个棕榈油基片段,这是信号传递所必需的,但也会损害其溶解度,从而影响其在细胞外空间的扩散。在某些情况下,wnt仅以近距离的方式起作用,但也有远程作用的实例。一些蛋白质和过程确保活性wnt到达适当的靶细胞。有些,如Porcupine, Wntless和Notum,专门用于Wnt功能;我们详细地描述了它们的分子活动。我们还概述了细胞基础结构(分泌、内吞和逆转录途径)如何促进wnt从产生到传递的进程。然后,我们讨论了wnt如何在细胞外空间传播并形成信号梯度,尽管携带疏水片段。我们特别强调脂质结合Wnt相互作用物和硫酸肝素蛋白聚糖的作用。最后,我们简要讨论了进化如何导致这种不寻常的信号通路的出现。
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The logistics of Wnt production and delivery.

Wnts are secreted proteins that control stem cell maintenance, cell fate decisions, and growth during development and adult homeostasis. Wnts carry a post-translational modification not seen in any other secreted protein: during biosynthesis, they are appended with a palmitoleoyl moiety that is required for signaling but also impairs solubility and hence diffusion in the extracellular space. In some contexts, Wnts act only in a juxtacrine manner but there are also instances of long range action. Several proteins and processes ensure that active Wnts reach the appropriate target cells. Some, like Porcupine, Wntless, and Notum are dedicated to Wnt function; we describe their activities in molecular detail. We also outline how the cell infrastructure (secretory, endocytic, and retromer pathways) contribute to the progression of Wnts from production to delivery. We then address how Wnts spread in the extracellular space and form a signaling gradient despite carrying a hydrophobic moiety. We highlight particularly the role of lipid-binding Wnt interactors and heparan sulfate proteoglycans. Finally, we briefly discuss how evolution might have led to the emergence of this unusual signaling pathway.

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