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果蝇胚胎中自分泌和旁分泌无翅信号的不同途径。

Distinct pathways for autocrine and paracrine Wingless signalling in Drosophila embryos.

作者信息

Hooper J E

机构信息

Department of Cellular and Structural Biology, University of Colorado Health Sciences Center, Denver 80262.

出版信息

Nature. 1994 Dec 1;372(6505):461-4. doi: 10.1038/372461a0.

Abstract

Two secreted proteins, Wingless and Hedgehog, instruct cell fates within the segmented epidermis of Drosophila embryos (reviewed in ref. 5). Wingless (Wg) is expressed by the most posterior cells in each parasegment; Hedgehog (Hh) is expressed in the most anterior cells of the next parasegment. Immediately after gastrulation, the two cell types are mutually dependent. Local Wg signalling stabilizes Hh expression and local Hh signalling stabilizes Wg expression. Direct Wg autoregulation (autocrine signalling) is masked by its paracrine role in maintaining hh, which in turn maintains wg. I have used zeste-white3 (zw3) and patched (ptc) mutant backgrounds to uncouple genetically this positive-feedback loop and to study autocrine Wg signalling. I report here that direct Wg autoregulation differs from Wg signalling to adjacent cells in the importance of fused (fu), smoothened (smo) and cubitus interruptus (ci) relative to zw3 and armadillo (arm). I also find that Wg autoregulation during this early hh-dependent phase differs from later Wg autoregulation by lack of gooseberry (gsb) participation.

摘要

两种分泌蛋白,无翅蛋白(Wingless)和刺猬蛋白(Hedgehog),在果蝇胚胎的分节表皮内指导细胞命运(参考文献5中有综述)。无翅蛋白(Wg)由每个副节中最后方的细胞表达;刺猬蛋白(Hh)在下一个副节的最前方细胞中表达。原肠胚形成后不久,这两种细胞类型相互依赖。局部Wg信号稳定Hh表达,局部Hh信号稳定Wg表达。Wg的直接自调节(自分泌信号传导)被其在维持hh中的旁分泌作用所掩盖,而hh又维持wg。我利用小体白色3(zeste-white3,zw3)和patched(ptc)突变背景从基因上解开这个正反馈环,并研究Wg自分泌信号传导。我在此报告,相对于zw3和犰狳蛋白(armadillo,arm),在融合蛋白(fused,fu)、平滑蛋白(smoothened,smo)和间断翅脉蛋白(cubitus interruptus,ci)的重要性方面,Wg的直接自调节与Wg向相邻细胞的信号传导不同。我还发现,在这个早期hh依赖阶段的Wg自调节与后期的Wg自调节不同,因为缺乏醋栗蛋白(gooseberry,gsb)的参与。

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