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A non-canonical role for the C. elegans dosage compensation complex in growth and metabolic regulation downstream of TOR complex 2

机译:秀丽隐杆线虫剂量补偿复合物在TOR复合物2下游的生长和代谢调节中的非典型作用

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The target of rapamycin complex 2 (TORC2) pathway is evolutionarily conserved and regulates cellular energetics, growth and metabolism. Loss of function of the essential TORC2 subunit Rictor (RICT-1) in Caenorhabditis elegans results in slow developmental rate, reduced brood size, small body size, increased fat mass and truncated lifespan. We performed a rict-1 suppressor RNAi screen of genes encoding proteins that possess the phosphorylation sequence of the AGC family kinase SGK, a key downstream effector of TORC2. Only RNAi to dpy-21 suppressed rict-1 slow developmental rate. DPY-21 functions canonically in the ten-protein dosage compensation complex (DCC) to downregulate the expression of X-linked genes only in hermaphroditic worms. However, we find that dpy-21 functions outside of its canonical role, as RNAi to dpy-21 suppresses TORC2 mutant developmental delay in rict-1 males and hermaphrodites. RNAi to dpy-21 normalized brood size and fat storage phenotypes in rict-1 mutants, but failed to restore normal body size and normal lifespan. Further dissection of the DCC via RNAi revealed that other complex members phenocopy the dpy-21 suppression of rict-1, as did RNAi to the DCC effectors set-1 and set-4, which methylate histone 4 on lysine 20 (H4K20). TORC2/rict-1 animals show dysregulation of H4K20 mono- and tri-methyl silencing epigenetic marks, evidence of altered DCC, SET-1 and SET-4 activity. DPY-21 protein physically interacts with the protein kinase SGK-1, suggesting that TORC2 directly regulates the DCC. Together, the data suggest non-canonical, negative regulation of growth and reproduction by DPY-21 via DCC, SET-1 and SET-4 downstream of TORC2 in C. elegans.
机译:雷帕霉素复合物2(TORC2)通路的目标是进化保守,并调节细胞的能量,生长和代谢。秀丽隐杆线虫中必需TORC2亚基Rictor(RICT-1)的功能丧失导致发育速度缓慢,育雏尺寸减小,体型较小,脂肪量增加和寿命缩短。我们进行了rict-1抑制RNAi筛选的基因编码的蛋白质,这些蛋白质具有AGC家族激酶SGK(TORC2的关键下游效应子)的磷酸化序列。只有dpy-21的RNAi抑制了rict-1的缓慢发育速度。 DPY-21在十蛋白剂量补偿复合物(DCC)中正常起作用,仅在雌雄同体的蠕虫中下调X连锁基因的表达。但是,我们发现dpy-21的功能超出其规范作用,因为dpy-21的RNAi抑制了rict-1雄性和雌雄同体的TORC2突变体发育延迟。到dpy-21的RNAi使rict-1突变体中的亲本大小和脂肪储存表型标准化,但未能恢复正常的体型和正常的寿命。通过RNAi对DCC的进一步解剖显示,其他复杂成员在表型上对rict-1进行了dpy-21抑制,对DCC效应子set-1和set-4的RNAi也进行了表型复制,后者将赖氨酸20(H4K20)上的组蛋白4甲基化。 TORC2 / rict-1动物显示H4K20单和三甲基沉默表观遗传标记失调,证明DCC,SET-1和SET-4活性改变。 DPY-21蛋白与蛋白激酶SGK-1发生物理相互作用,表明TORC2直接调节DCC。总之,数据表明线虫中DPY-21通过DCC,SET-1和SET-4在TORC2下游的生长和繁殖的非典型负调控。

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