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首页> 外文期刊>Molecular biology of the cell >Mechanisms of JAK/STAT pathway negative regulation by the short coreceptor Eye Transformer/Latran
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Mechanisms of JAK/STAT pathway negative regulation by the short coreceptor Eye Transformer/Latran

机译:短共感受器Eye Transformer / Latran对JAK / STAT通路负调控的机制

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摘要

Transmembrane receptors interact with extracellular ligands to transduce intracellular signaling cascades, modulate target gene expression, and regulate processes such as proliferation, apoptosis, differentiation, and homeostasis. As a consequence, aberrant signaling events often underlie human disease. Whereas the vertebrate JAK/STAT signaling cascade is transduced via multiple receptor combinations, the Drosophila pathway has only one full-length signaling receptor, Domeless (Dome), and a single negatively acting receptor, Eye Transformer/Latran (Et/Lat). Here we investigate the molecular mechanisms underlying Et/Lat activity. We demonstrate that Et/Lat negatively regulates the JAK/STAT pathway activity and can bind to Dome, thus reducing Dome: Dome homodimerization by creating signaling-incompetent Dome: Et/Lat heterodimers. Surprisingly, we find that Et/Lat is able to bind to both JAK and STAT92E but, despite the presence of putative cytokine-binding motifs, does not detectably interact with pathway ligands. We find that Et/Lat is trafficked through the endocytic machinery for lysosomal degradation but at a much slower rate than Dome, a difference that may enhance its ability to sequester Dome into signaling-incompetent complexes. Our data offer new insights into the molecular mechanism and regulation of Et/Lat in Drosophila that may inform our understanding of how short receptors function in other organisms.
机译:跨膜受体与细胞外配体相互作用,以转导细胞内信号传导级联,调节靶基因表达,并调节增殖,凋亡,分化和稳态等过程。结果,异常的信号事件通常是人类疾病的基础。脊椎动物的JAK / STAT信号级联反应是通过多种受体组合转导的,而果蝇途径只有一个全长信号受体Domeless(Dome)和一个负作用受体,Eye Transformer / Latran(Et / Lat)。在这里,我们研究了潜在的Et / Lat活性的分子机制。我们证明Et / Lat负调节JAK / STAT通路的活动,并可以绑定到Dome,从而通过创建信号不适合的Dome:Et / Lat异二聚体来降低Dome:Dome的同二聚。令人惊讶地,我们发现Et / Lat能够结合JAK和STAT92E,但是,尽管存在假定的细胞因子结合基序,但不能与途径配体相互作用。我们发现,Et / Lat通过内吞机器进行溶酶体降解,但速率比Dome慢得多,这一差异可能增强了其将Dome螯合为信号不健全的复合物的能力。我们的数据为果蝇中Et / Lat的分子机制和调控提供了新的见解,可能有助于我们了解短受体在其他生物中的功能。

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