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ADAMTS Sol narae 裂解细胞外 Wingless 以产生一种新的活性形式,从而调节果蝇中的细胞增殖。

ADAMTS Sol narae cleaves extracellular Wingless to generate a novel active form that regulates cell proliferation in Drosophila.

机构信息

Department of Biological Sciences, Korea Advanced Institute of Science and Technology, 291 Daehak-ro, Yuseong-gu, Daejeon, Korea.

Center for Bioanalysis, Korea Research Institute of Standards and Science, 267 Gajung-ro, Yuseung-gu, Daejeon, Korea.

出版信息

Cell Death Dis. 2019 Jul 22;10(8):564. doi: 10.1038/s41419-019-1794-8.

Abstract

Wnt/ Wingless (Wg) is essential for embryonic development and adult homeostasis in all metazoans, but the mechanisms by which secreted Wnt/Wg is processed remain largely unknown. A Drosophila Sol narae (Sona) is a member of A Disintegrin And Metalloprotease with ThromboSpondin motif (ADAMTS) family, and positively regulates Wg signaling by promoting Wg secretion. Here we report that Sona and Wg are secreted by both conventional Golgi and exosomal transports, and Sona cleaves extracellular Wg at the two specific sites, leading to the generation of N-terminal domain (NTD) and C-terminal domain (CTD) fragments. The cleaved forms of extracellular Wg were detected in the extracellular region of fly wing discs, and its level was substantially reduced in sona mutants. Transient overexpression of Wg-CTD increased wing size while prolonged overexpression caused lethality and developmental defects. In contrast, Wg-NTD did not induce any phenotype. Moreover, the wing defects and lethality induced by sona RNAi were considerably rescued by Wg-CTD, indicating that a main function of extracellular Sona is the generation of Wg-CTD. Wg-CTD stabilized cytoplasmic Armadillo (Arm) and had genetic interactions with components of canonical Wg signaling. Wg-CTD also induced Wg downstream targets such as Distal-less (Dll) and Vestigial (Vg). Most importantly, Cyclin D (Cyc D) was induced by Wg-CTD but not by full-length Wg. Because Sona also induces Cyc D in a cell non-autonomous manner, Wg-CTD generated by Sona in the extracellular region activates a subset of Wg signaling whose major function is the regulation of cell proliferation.

摘要

Wnt/ Wingless (Wg) 在所有后生动物的胚胎发育和成年体内平衡中都至关重要,但分泌的 Wnt/Wg 被加工的机制在很大程度上仍然未知。果蝇 Sol narae (Sona) 是 A Disintegrin And Metalloprotease with ThromboSpondin motif (ADAMTS) 家族的成员,通过促进 Wg 分泌来正向调节 Wg 信号。在这里,我们报告 Sona 和 Wg 是通过常规的高尔基体和外泌体运输分泌的,并且 Sona 在两个特定的位点切割细胞外 Wg,导致生成 N 端结构域 (NTD) 和 C 端结构域 (CTD) 片段。在果蝇翅膀盘的细胞外区域检测到细胞外 Wg 的切割形式,其水平在 sona 突变体中显著降低。Wg-CTD 的瞬时过表达增加了翅膀的大小,而延长的过表达则导致了致死性和发育缺陷。相比之下,Wg-NTD 不会引起任何表型。此外,sona RNAi 引起的翅膀缺陷和致死性通过 Wg-CTD 得到了显著挽救,表明细胞外 Sona 的主要功能是生成 Wg-CTD。Wg-CTD 稳定细胞质 Armadillo (Arm),并与经典 Wg 信号成分具有遗传相互作用。Wg-CTD 还诱导了 Wg 下游靶标,如 Distal-less (Dll) 和 Vestigial (Vg)。最重要的是,Wg-CTD 诱导了 Cyclin D (Cyc D),但全长 Wg 没有。由于 Sona 也以细胞非自主性的方式诱导 Cyc D,因此 Sona 在细胞外区域产生的 Wg-CTD 激活了 Wg 信号的一个子集,其主要功能是调节细胞增殖。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/38fc/6646336/f87f8562057e/41419_2019_1794_Fig1_HTML.jpg

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