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Boss细胞外结构域的寡聚化增强了其与Sevenless受体的结合及其对R7诱导的拮抗作用。

Oligomerization of the extracellular domain of Boss enhances its binding to the Sevenless receptor and its antagonistic effect on R7 induction.

作者信息

Sevrioukov E A, Walenta J H, Sunio A, Phistry M, Krämer H

机构信息

Department of Cell Biology and Neuroscience, University of Texas Southwestern Medical Center, Dallasp65235-9111, USA.

出版信息

J Cell Sci. 1998 Mar;111 ( Pt 6):737-47. doi: 10.1242/jcs.111.6.737.

Abstract

In the developing compound eye of Drosophila, neuronal differentiation of the R7 photoreceptor cell is induced by the interaction of the receptor tyrosine kinase Sevenless with its ligand Bride of sevenless (Boss), which is expressed on the neighboring R8 cell. Boss is an unusual ligand of a receptor tyrosine kinase: it is composed of a large extracellular domain, a transmembrane domain with seven membrane-spanning segments and a cytoplasmic tail. Expression of a monomeric, secreted form of the extracellular domain of Boss is not sufficient for Sevenless activation, and instead acts as a weak antagonist. Because oligomerization appears to be a critical step in the activation of receptor tyrosine kinases, we used oligomerized forms of the Boss extracellular domain to test their ability to bind to Sevenless in vivo and restore R7 induction in vivo. Oligomerization was achieved by fusion to the leucine zipper of the yeast transcription factor GCN4 or to the tetramerization helix of Lac repressor. Binding of these multivalent proteins to Sevenless could be detected in vitro by immunoprecipitation of cross-linked ligand/receptor complexes and in vivo by receptor-dependent ligand localization. However, neither R8-specific or ubiquitous expression of multivalent Exboss ligands rescued the boss phenotype. Instead, these ligands acted as competitive inhibitors for wild-type Boss protein and thereby suppressed R7 induction. Therefore the role of the transmembrane or cytoplasmic domains of Boss in the activation of the Sev receptor cannot be replaced by oligomerization.

摘要

在果蝇发育中的复眼中,R7光感受器细胞的神经元分化是由受体酪氨酸激酶Sevenless与其配体Sevenless的新娘(Boss)相互作用诱导的,Boss在相邻的R8细胞上表达。Boss是受体酪氨酸激酶的一种不寻常配体:它由一个大的细胞外结构域、一个具有七个跨膜段的跨膜结构域和一个细胞质尾巴组成。Boss细胞外结构域的单体分泌形式的表达不足以激活Sevenless,反而起到弱拮抗剂的作用。由于寡聚化似乎是受体酪氨酸激酶激活的关键步骤,我们使用Boss细胞外结构域的寡聚化形式来测试它们在体内与Sevenless结合并在体内恢复R7诱导的能力。通过与酵母转录因子GCN4的亮氨酸拉链或Lac阻遏物的四聚化螺旋融合来实现寡聚化。这些多价蛋白与Sevenless的结合可以通过交联配体/受体复合物的免疫沉淀在体外检测到,并通过受体依赖性配体定位在体内检测到。然而,多价Exboss配体在R8特异性或普遍表达时都不能挽救boss表型。相反,这些配体作为野生型Boss蛋白的竞争性抑制剂,从而抑制R7诱导。因此,Boss的跨膜或细胞质结构域在Sev受体激活中的作用不能被寡聚化所取代。

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