首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >APX-1 can substitute for its homolog LAG-2 to direct cell interactions throughout Caenorhabditis elegans development.
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APX-1 can substitute for its homolog LAG-2 to direct cell interactions throughout Caenorhabditis elegans development.

机译:APX-1可以替代其同系物LAG-2来指导整个秀丽隐杆线虫发育过程中的细胞相互作用。

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摘要

The homologous LAG-2 and APX-1 membrane proteins are putative signaling ligands in the GLP-1/LIN-12 signal-transduction pathway in Caenorhabditis elegans. Normally, LAG-2 and APX-1 mediate distinct cell interactions. Here, we demonstrate that APX-1, which normally interacts with GLP-1 in the early embryo, can substitute for LAG-2 throughout development. When expressed under control of the lag-2 promoter, an apx-1 cDNA can completely rescue a lag-2 null mutant. To substitute for LAG-2, APX-1 must be able to interact with both GLP-1 and LIN-12 receptors and to mediate a variety of cell interactions during development. Therefore, APX-1 and LAG-2 are essentially equivalent in their ability to influence receptor activity. On the basis of this result, we suggest that the existence of multiple-signaling ligands in the LIN-12/GLP-1 signal transduction pathway does not reflect the evolution of functionally distinct proteins but rather the imposition of distinct controls of gene expression upon functionally similar proteins. Finally, we propose that the specification of distinct cell fates by the LIN-12/GLP-1 signal-transduction pathway relies on activities functioning downstream of the ligand and receptor, rather than on specific ligand-receptor interactions.
机译:同源的LAG-2和APX-1膜蛋白是秀丽隐杆线虫GLP-1 / LIN-12信号转导途径中的假定信号配体。通常,LAG-2和APX-1介导不同的细胞相互作用。在这里,我们证明了通常在早期胚胎中与GLP-1相互作用的APX-1可以在整个发育过程中替代LAG-2。当在lag-2启动子的控制下表达时,apx-1 cDNA可以完全拯救lag-2空突变体。为了替代LAG-2,APX-1必须能够与GLP-1和LIN-12受体相互作用,并在发育过程中介导多种细胞相互作用。因此,APX-1和LAG-2影响受体活性的能力基本相同。根据此结果,我们认为LIN-12 / GLP-1信号转导途径中存在多信号配体并不反映功能独特的蛋白质的进化,而是功能上基因表达的独特控制的施加相似的蛋白质。最后,我们建议通过LIN-12 / GLP-1信号转导途径确定不同细胞命运的规格取决于配体和受体下游的功能,而不是特定的配体-受体相互作用。

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