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Sumoylation is tumor-suppressive and confers proliferative quiescence to hematopoietic progenitors in Drosophila melanogaster larvae

机译:Sumoylation是抑制肿瘤的,赋予果蝇幼虫的造血祖细胞增殖的静止。

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How cell-intrinsic regulation of the cell cycle and the extrinsic influence of the niche converge to provide proliferative quiescence, safeguard tissue integrity, and provide avenues to stop stem cells from giving rise to tumors is a major challenge in gene therapy and tissue engineering. We explore this question in sumoylation-deficient mutants of Drosophila . In wild type third instar larval lymph glands, a group of hematopoietic stem/progenitor cells acquires quiescence; a multicellular niche supports their undifferentiated state. However, how proliferative quiescence is instilled in this population is not understood. We show that Ubc9 protein is nuclear in this population. Loss of the SUMO-activating E1 enzyme, Aos1/Uba2, the conjugating E2 enzyme, Ubc9, or the E3 SUMO ligase, PIAS, results in a failure of progenitors to quiesce; progenitors become hyperplastic, misdifferentiate, and develop into microtumors that eventually detach from the dorsal vessel. Significantly, dysplasia and lethality of Ubc9 mutants are rescued when Ubc9wt is provided specifically in the progenitor populations, but not when it is provided in the niche or in the differentiated cortex. While normal progenitors express high levels of the Drosophila cyclin-dependent kinase inhibitor p21 homolog, Dacapo, the corresponding overgrown mutant population exhibits a marked reduction in Dacapo. Forced expression of either Dacapo or human p21 in progenitors shrinks this population. The selective expression of either protein in mutant progenitor cells, but not in other hematopoietic populations, limits overgrowth, blocks tumorogenesis, and restores organ integrity. We discuss an essential and complex role for sumoylation in preserving the hematopoietic progenitor states for stress response and in the context of normal development of the fly.
机译:基因治疗和组织工程中的主要挑战是如何细胞内在调节细胞周期和利基的外在影响如何收敛以提​​供增殖静止性,保护组织完整性并提供阻止干细胞产生肿瘤的途径。我们在果蝇的sumoylation缺陷突变体中探索这个问题。在野生型三龄幼虫淋巴腺中,一组造血干/祖细胞获得静止。多细胞小生境支持它们的未分化状态。但是,还不知道如何向该人群灌输增殖性的静止状态。我们显示,Ubc9蛋白在该人群中是有核的。激活SUMO的E1酶Aos1 / Uba2,缀合的E2酶Ubc9或E3 SUMO连接酶PIAS的丢失导致祖细胞无法静默;祖细胞变成增生性,错误分化并发展为最终从背血管脱离的微肿瘤。重要的是,当在祖先群体中专门提供Ubc9wt时,可以挽救Ubc9突变体的发育不良和致死性,而在利基市场或分化的皮层中提供Ubc9wt时,可以挽救。正常祖细胞表达高水平的果蝇细胞周期蛋白依赖性激酶抑制剂p21同源物Dacapo,而相应的杂草丛生的突变种群Dacapo则明显减少。 Dacapo或人类p21在祖细胞中的强迫表达使该种群减少。任一种蛋白在突变祖细胞中的选择性表达,但在其他造血种群中的选择性表达,限制了过度生长,阻止了肿瘤的发生,并恢复了器官的完整性。我们讨论了在维持造血祖细胞状态的应激反应和果蝇正常发育的背景下,SUMO化的重要而复杂的作用。

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