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一个依赖活性的相互作用网络将Rel蛋白背腹侧与它的细胞质调节因子联系起来。

An activity-dependent network of interactions links the Rel protein Dorsal with its cytoplasmic regulators.

作者信息

Edwards D N, Towb P, Wasserman S A

机构信息

Department of Molecular Biology and Oncology, UT Southwestern Medical Center, Dallas, Texas 75235-9148, USA.

出版信息

Development. 1997 Oct;124(19):3855-64. doi: 10.1242/dev.124.19.3855.

Abstract

A signaling pathway active on the ventral side of the Drosophila embryo defines dorsoventral polarity. A cell surface signal relayed by Toll, Tube and Pelle releases the Rel-related protein Dorsal from its cytoplasmic inhibitor Cactus; free Dorsal translocates into nuclei and directs expression of ventral fates. Using the yeast two-hybrid system and immunoprecipitation experiments, we define scaffolding and anchoring interactions among the pathway components. We show that Dorsal binds specifically to Tube, Pelle and Cactus, and that the protein kinase activity of Pelle differentially regulates its interactions with Dorsal and Tube. We also identify Drosophila Filamin as a potential adaptor linking the interaction network, via Tube, to the transmembrane receptor Toll.

摘要

一条在果蝇胚胎腹侧活跃的信号通路决定了背腹极性。由Toll、Tube和Pelle传递的细胞表面信号将Rel相关蛋白Dorsal从其细胞质抑制剂Cactus中释放出来;游离的Dorsal转移到细胞核中并指导腹侧命运的表达。利用酵母双杂交系统和免疫沉淀实验,我们确定了该信号通路各组分之间的支架和锚定相互作用。我们发现Dorsal特异性地与Tube、Pelle和Cactus结合,并且Pelle的蛋白激酶活性差异性地调节其与Dorsal和Tube的相互作用。我们还鉴定出果蝇细丝蛋白是一种潜在的衔接蛋白,它通过Tube将相互作用网络与跨膜受体Toll连接起来。

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