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Mutation of kri1l causes definitive hematopoiesis failure via PERK-dependent excessive autophagy induction

机译:kril1突变通过依赖于PERK的过度自噬诱导最终的造血功能衰竭

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摘要

Dysregulation of ribosome biogenesis causes human diseases, such as Diamond-Blackfan anemia, del (5q-) syndrome and bone marrow failure. However, the mechanisms of blood disorders in these diseases remain elusive. Through genetic mapping, molecular cloning and mechanism characterization of the zebrafish mutant cas002, we reveal a novel connection between ribosomal dysfunction and excessive autophagy in the regulation of hematopoietic stem/progenitor cells (HSPCs). cas002 carries a recessive lethal mutation in kri1l gene that encodes an essential component of rRNA small subunit processome. We show that Kri1l is required for normal ribosome biogenesis, expansion of definitive HSPCs and subsequent lineage differentiation. Through live imaging and biochemical studies, we find that loss of Kri1l causes the accumulation of misfolded proteins and excessive PERK activation-dependent autophagy in HSPCs. Blocking autophagy but not inhibiting apoptosis by Bcl2 overexpression can fully rescue hematopoietic defects, but not the lethality of kri1lcas002 embryos. Treatment with autophagy inhibitors (3-MA and Baf A1) or PERK inhibitor (GSK2656157), or knockdown of beclin1 or perk can markedly restore HSPC proliferation and definitive hematopoietic cell differentiation. These results may provide leads for effective therapeutics that benefit patients with anemia or bone marrow failure caused by ribosome disorders.
机译:核糖体生物发生失调会导致人类疾病,例如钻石-布莱克范贫血,del(5q-)综合征和骨髓衰竭。然而,这些疾病中血液失调的机制仍然难以捉摸。通过遗传图谱,分子克隆和斑马鱼突变体cas002的机制表征,我们揭示了核糖体功能障碍和过度自噬在造血干/祖细胞(HSPCs)调节之间的新型联系。 cas002在kri11基因中带有隐性致死突变,该突变编码rRNA小亚基过程组的基本组成部分。我们表明,Kri11l是正常核糖体生物发生,确定的HSPC扩展和随后的谱系分化所必需的。通过实时成像和生化研究,我们发现Kri11的丢失会导致错误折叠的蛋白质积累以及HSPC中过度的PERK激活依赖性自噬。通过Bcl2过表达阻断自噬而不抑制凋亡可以完全挽救造血缺陷,但不能完全挽救kri11 cas002 胚胎的致死性。用自噬抑制剂(3-MA和Baf A1)或PERK抑制剂(GSK2656157)治疗,或敲低beclin1或perk可以显着恢复HSPC增殖和确定的造血细胞分化。这些结果可为有效的治疗方法提供线索,这些治疗方法有益于因核糖体疾病引起的贫血或骨髓衰竭患者。

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