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配体-受体相互作用以及Delta、Serrate和Notch的跨内吞作用:果蝇Notch信号通路的成员

Ligand-receptor interactions and trans-endocytosis of Delta, Serrate and Notch: members of the Notch signalling pathway in Drosophila.

作者信息

Klueg K M, Muskavitch M A

机构信息

Department of Biology, Indiana University, Bloomington, IN 47405, USA.

出版信息

J Cell Sci. 1999 Oct;112 ( Pt 19):3289-97. doi: 10.1242/jcs.112.19.3289.

Abstract

Molecular evidence has established that direct heterotypic interactions occur between the Drosophila receptor Notch and the ligands Delta and Serrate, and that homotypic interactions occur between Delta molecules on opposing cell surfaces. Using an aggregation assay developed for Drosophila cultured cells, we have compared the affinities of these interactions. We find that the heterotypic interactions between Notch and the ligands Delta and Serrate have higher affinities than homotypic interactions between Delta molecules. Contrary to previous suggestions, our evidence implies that the interactions between Serrate and Notch are similar in affinity to those between Delta and Notch. We find that Fringe does not detectably affect the ligand-receptor interactions of the Notch pathway in cultured cells. Furthermore, we find that Serrate, like Delta, is a transmembrane ligand that can participate in reciprocal trans-endocytosis of ligand and receptor between expressing cells. Our findings imply that qualitative differences between Delta- and Serrate-mediated Notch signalling depend on characteristics other than intrinsic ligand-receptor affinities or the ability to participate in reciprocal ligand and receptor trans-endocytosis.

摘要

分子证据表明,果蝇受体Notch与配体Delta和Serrate之间存在直接的异型相互作用,并且相对细胞表面的Delta分子之间存在同型相互作用。利用为果蝇培养细胞开发的聚集试验,我们比较了这些相互作用的亲和力。我们发现,Notch与配体Delta和Serrate之间的异型相互作用比Delta分子之间的同型相互作用具有更高的亲和力。与之前的观点相反,我们的证据表明,Serrate与Notch之间的相互作用在亲和力上与Delta和Notch之间的相互作用相似。我们发现Fringe在培养细胞中未检测到对Notch信号通路的配体-受体相互作用有影响。此外,我们发现Serrate与Delta一样,是一种跨膜配体,可参与表达细胞之间配体和受体的相互反式内吞作用。我们的研究结果表明,Delta和Serrate介导的Notch信号传导之间的定性差异取决于内在配体-受体亲和力或参与配体和受体相互反式内吞作用的能力以外的其他特征。

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