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

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 zebra...

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Autores principales: Jia, Xiao-E, Ma, Ke, Xu, Tao, Gao, Lei, Wu, Shuang, Fu, Cong, Zhang, Wenjuan, Wang, Zhizhang, Liu, Kaiyu, Dong, Mei, Jing, Changbin, Ren, Chunguang, Dong, Zhiwei, Chen, Yi, Jin, Yi, Huang, Qiuhua, Chang, Xing, Deng, Min, Li, Li, Luo, Lingfei, Zhu, Jun, Dang, Yongjun, Chang, Hung-Chun, Zon, Leonard I, Zhou, Yi, Chen, Saijuan, Pan, Weijun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4528055/
https://www.ncbi.nlm.nih.gov/pubmed/26138676
http://dx.doi.org/10.1038/cr.2015.81
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author Jia, Xiao-E
Ma, Ke
Xu, Tao
Gao, Lei
Wu, Shuang
Fu, Cong
Zhang, Wenjuan
Wang, Zhizhang
Liu, Kaiyu
Dong, Mei
Jing, Changbin
Ren, Chunguang
Dong, Zhiwei
Chen, Yi
Jin, Yi
Huang, Qiuhua
Chang, Xing
Deng, Min
Li, Li
Luo, Lingfei
Zhu, Jun
Dang, Yongjun
Chang, Hung-Chun
Zon, Leonard I
Zhou, Yi
Chen, Saijuan
Pan, Weijun
author_facet Jia, Xiao-E
Ma, Ke
Xu, Tao
Gao, Lei
Wu, Shuang
Fu, Cong
Zhang, Wenjuan
Wang, Zhizhang
Liu, Kaiyu
Dong, Mei
Jing, Changbin
Ren, Chunguang
Dong, Zhiwei
Chen, Yi
Jin, Yi
Huang, Qiuhua
Chang, Xing
Deng, Min
Li, Li
Luo, Lingfei
Zhu, Jun
Dang, Yongjun
Chang, Hung-Chun
Zon, Leonard I
Zhou, Yi
Chen, Saijuan
Pan, Weijun
author_sort Jia, Xiao-E
collection PubMed
description 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 kri1l(cas002) 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.
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spelling pubmed-45280552015-08-07 Mutation of kri1l causes definitive hematopoiesis failure via PERK-dependent excessive autophagy induction Jia, Xiao-E Ma, Ke Xu, Tao Gao, Lei Wu, Shuang Fu, Cong Zhang, Wenjuan Wang, Zhizhang Liu, Kaiyu Dong, Mei Jing, Changbin Ren, Chunguang Dong, Zhiwei Chen, Yi Jin, Yi Huang, Qiuhua Chang, Xing Deng, Min Li, Li Luo, Lingfei Zhu, Jun Dang, Yongjun Chang, Hung-Chun Zon, Leonard I Zhou, Yi Chen, Saijuan Pan, Weijun Cell Res Original Article 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 kri1l(cas002) 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. Nature Publishing Group 2015-08 2015-07-03 /pmc/articles/PMC4528055/ /pubmed/26138676 http://dx.doi.org/10.1038/cr.2015.81 Text en Copyright © 2015 Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences http://creativecommons.org/licenses/by-nc-nd/3.0 This work is licensed under the Creative Commons Attribution-NonCommercial-No Derivative Works 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/3.0
spellingShingle Original Article
Jia, Xiao-E
Ma, Ke
Xu, Tao
Gao, Lei
Wu, Shuang
Fu, Cong
Zhang, Wenjuan
Wang, Zhizhang
Liu, Kaiyu
Dong, Mei
Jing, Changbin
Ren, Chunguang
Dong, Zhiwei
Chen, Yi
Jin, Yi
Huang, Qiuhua
Chang, Xing
Deng, Min
Li, Li
Luo, Lingfei
Zhu, Jun
Dang, Yongjun
Chang, Hung-Chun
Zon, Leonard I
Zhou, Yi
Chen, Saijuan
Pan, Weijun
Mutation of kri1l causes definitive hematopoiesis failure via PERK-dependent excessive autophagy induction
title Mutation of kri1l causes definitive hematopoiesis failure via PERK-dependent excessive autophagy induction
title_full Mutation of kri1l causes definitive hematopoiesis failure via PERK-dependent excessive autophagy induction
title_fullStr Mutation of kri1l causes definitive hematopoiesis failure via PERK-dependent excessive autophagy induction
title_full_unstemmed Mutation of kri1l causes definitive hematopoiesis failure via PERK-dependent excessive autophagy induction
title_short Mutation of kri1l causes definitive hematopoiesis failure via PERK-dependent excessive autophagy induction
title_sort mutation of kri1l causes definitive hematopoiesis failure via perk-dependent excessive autophagy induction
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4528055/
https://www.ncbi.nlm.nih.gov/pubmed/26138676
http://dx.doi.org/10.1038/cr.2015.81
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