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在发育的翅膀中,稳健的 Wnt 信号由 Wg 蛋白梯度和 Fz2 受体活性维持。

Robust Wnt signaling is maintained by a Wg protein gradient and Fz2 receptor activity in the developing wing.

机构信息

German Cancer Research Center (DKFZ), Division Signaling and Functional Genomics and Department of Cell and Molecular Biology, Medical Faculty Mannheim, Heidelberg University, Im Neuenheimer Feld 580, 69120 Heidelberg, Germany

Department of Biological Science, Indian Institute of Science Education and Research Bhopal, Bhopal Bypass Road, Bhauri, Bhopal 462066, India.

出版信息

Development. 2019 Aug 9;146(15):dev174789. doi: 10.1242/dev.174789.

Abstract

Wnts are secreted proteins that regulate cell fate during development of all metazoans. Wnt proteins were proposed to spread over several cells to activate signaling directly at a distance. In the wing epithelium, an extracellular gradient of the Wnt1 homolog Wingless (Wg) was observed extending over several cells away from producing cells. Surprisingly, however, it was also shown that a membrane-tethered Neurotactin-Wg fusion protein (NRT-Wg) can largely replace endogenous Wg, leading to proper patterning of the wing. Therefore, the functional range of Wg and whether Wg spreading is required for correct tissue patterning remains controversial. Here, by capturing secreted Wg on cells away from the source, we show that Wg acts over a distance of up to 11 cell diameters to induce signaling. Furthermore, cells located outside the reach of extracellular Wg depend on the Frizzled2 receptor to maintain signaling. Frizzled2 expression is increased in the absence of Wg secretion and is required to maintain signaling and cell survival in wing discs. Together, these results provide insight into the mechanisms by which robust Wnt signaling is achieved in proliferating tissues.

摘要

Wnts 是一类分泌蛋白,在所有后生动物的发育过程中调节细胞命运。Wnt 蛋白被认为可以在多个细胞之间扩散,从而在远距离直接激活信号。在 wing 上皮中,观察到 Wnt1 同源物 Wingless (Wg) 的细胞外梯度从产生细胞延伸到几个细胞之外。然而,令人惊讶的是,还表明膜结合的 Neurotactin-Wg 融合蛋白 (NRT-Wg) 可以在很大程度上替代内源性 Wg,从而导致翅膀的正确图案形成。因此,Wg 的功能范围以及 Wg 扩散是否需要正确的组织图案形成仍然存在争议。在这里,通过捕获远离源的细胞分泌的 Wg,我们表明 Wg 可以在长达 11 个细胞直径的距离上诱导信号。此外,位于细胞外 Wg 作用范围之外的细胞依赖于 Frizzled2 受体来维持信号。在没有 Wg 分泌的情况下,Frizzled2 的表达增加,并且在 wing 盘状组织中维持信号和细胞存活是必需的。这些结果共同提供了关于在增殖组织中实现强大 Wnt 信号的机制的见解。

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