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SUMO 化修饰具有抑瘤作用,并使果蝇幼虫造血祖细胞进入增殖静止状态。

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

机构信息

Biology Department, The City College of the City University of New York , 138th Street and Convent Avenue, New York, NY 10031 , USA ; The Graduate Center of the City University of New York , 365 Fifth Avenue, New York, NY 10016 , USA.

出版信息

Biol Open. 2012 Mar 15;1(3):161-72. doi: 10.1242/bio.2012043. Epub 2011 Dec 28.

Abstract

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 Ubc9(wt) 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.

摘要

细胞内在的细胞周期调控和细胞外龛的影响如何汇聚在一起,为细胞提供增殖静止、维持组织完整性,并为阻止干细胞产生肿瘤提供途径,这是基因治疗和组织工程中的一个主要挑战。我们在果蝇的 sumoylation 缺陷突变体中探索了这个问题。在野生型三龄幼虫淋巴腺中,一群造血干细胞/祖细胞获得静止状态;一个多细胞龛支持它们的未分化状态。然而,这种群体中的增殖静止是如何产生的尚不清楚。我们发现 Ubc9 蛋白在这个群体中是核内的。SUMO-激活酶 E1(Aos1/Uba2)、连接酶 E2(Ubc9)或 E3 SUMO 连接酶 PIAS 的缺失,导致祖细胞不能静止;祖细胞变得增生、分化异常,并发展成微肿瘤,最终从背血管上脱落。值得注意的是,当 Ubc9(wt) 特异性地提供给祖细胞群体时,Ubc9 突变体的发育不良和致死性可以得到挽救,但当它提供给龛或分化的皮质时则不能。虽然正常的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,但相应的过度生长突变体群体的 Dacapo 水平显著降低。在祖细胞中强制表达 Dacapo 或人 p21 会使这个群体缩小。这两种蛋白在突变体祖细胞中的选择性表达,而不是在其他造血细胞群体中的表达,限制了过度生长、阻止了肿瘤发生,并恢复了器官的完整性。我们讨论了 sumoylation 在应激反应和果蝇正常发育过程中维持造血祖细胞状态的重要而复杂的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ccf8/3507282/5bf362822670/bio-01-03-161-f01.jpg

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