Heme oxygenase-1 affects generation and spontaneous cardiac differentiation of induced pluripotent stem cells

被引:18
作者
Stepniewski, Jacek [1 ]
Pacholczak, Tomasz [1 ]
Skrzypczyk, Aniela [1 ]
Ciesla, Maciej [1 ]
Szade, Agata [1 ]
Szade, Krzysztof [1 ]
Bidanel, Romain [1 ]
Langrzyk, Agnieszka [2 ]
Grochowski, Radoslaw [1 ]
Vandermeeren, Felix [1 ]
Kachamakova-Trojanowska, Neli [1 ]
Jez, Mateusz [1 ]
Drabik, Grazyna [3 ]
Nakanishi, Mahito [4 ]
Jozkowicz, Alicja [1 ]
Dulak, Jozef [1 ,2 ]
机构
[1] Jagiellonian Univ, Fac Biochem Biophys & Biotechnol, Dept Med Biotechnol, Krakow, Poland
[2] Kardio Med Silesia, Zabrze, Poland
[3] Univ Childrens Hosp Cracow, Dept Pathol, Krakow, Poland
[4] Natl Inst Adv Ind Sci & Technol, Biotechnol Res Inst Drug Discovery, Tsukuba, Ibaraki, Japan
关键词
heme oxygenase-1 (HO-1); nuclear factor (erythroid-derived 2)-like factor 2 (Nrf2); reprogramming; p53; cardiomyocyte; induced pluripotent stem cells; embryonic stem cells; CRISPR; Cas-9; microRNA; miR-34a; OXIDATIVE STRESS; GENE-EXPRESSION; NRF2; SYSTEM; PROLIFERATION; 14-3-3-SIGMA; PROGRESSION; ACTIVATION; MECHANISMS; APOPTOSIS;
D O I
10.1002/iub.1711
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Cellular stress can influence efficiency of iPSCs generation and their differentiation. However, the role of intracellular cytoprotective factors in these processes is still not well known. Therefore, we investigated the effect of HO-1 (Hmox1) or Nrf2 (Nfe2l2), two major cytoprotective genes. Hmox1(-/-) fibroblasts demonstrated decreased reprogramming efficiency in comparison to Hmox1(+/+) cells. Reversely, pharmacological enhancement of HO-1 resulted in higher number of iPSCs colonies. Importantly, elevated level of both p53 and p53-regulated miR-34a and 14-3-3 sigma was observed in HO-1-deficient fibroblasts whereas downregulation of p53 in these cells markedly increased their reprogramming efficiency. In human fibroblasts HO-1 silencing also induced p53 expression and affected reprogramming outcome. Hmox1(+/+) and Hmox1(-/-) iPSCs similarly differentiated in vitro to cells originating from three germ layers, however, lower number of contracting cells was observed during this process in HO-1-deficient cells indicating attenuated cardiac differentiation. Importantly, silencing of Hmox1 in murine ESC using CRISPR/Cas-9 editing also impaired their spontaneous cardiac differentiation. Decreased reprogramming efficiency was also observed in Nrf2-lacking fibroblasts. Reversely, sulforaphane, a Nrf2 activator, increased the number of iPSCs colonies. However, both Nfe2l2(+/+) and Nfe2l2(-/-) iPSCs showed similar pluripotency and differentiation capacity. These results indicate that regulation of HO-1 expression can further optimize generation and cardiac differentiation of iPSCs. (c) 2018 IUBMB Life, 70(2):129-142, 2018
引用
收藏
页码:129 / 142
页数:14
相关论文
共 44 条
[1]   Mechanisms and models of somatic cell reprogramming [J].
Buganim, Yosef ;
Faddah, Dina A. ;
Jaenisch, Rudolf .
NATURE REVIEWS GENETICS, 2013, 14 (06) :427-439
[2]   Heme oxygenase-1 deficiency leads to disrupted response to acute stress in stem cells and progenitors [J].
Cao, Yu-An ;
Wagers, Amy J. ;
Karsunky, Holger ;
Zhao, Hui ;
Reeves, Robert ;
Wong, Ronald J. ;
Stevenson, David K. ;
Weissman, Irving L. ;
Contag, Christopher H. .
BLOOD, 2008, 112 (12) :4494-4502
[3]   NRF2, a member of the NFE2 family of transcription factors, is not essential for murine erythropoiesis, growth, and development [J].
Chan, KM ;
Lu, RH ;
Chang, JC ;
Kan, YW .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1996, 93 (24) :13943-13948
[4]   Transactivation of miR-34a by p53 broadly influences gene expression and promotes apoptosis [J].
Chang, Tsung-Cheng ;
Wentzel, Erik A. ;
Kent, Oliver A. ;
Ramachandran, Kalyani ;
Mullendore, Michael ;
Lee, Kwang Hyuck ;
Feldmann, Georg ;
Yamakuchi, Munekazu ;
Ferlito, Marcella ;
Lowenstein, Charles J. ;
Arking, Dan E. ;
Beer, Michael A. ;
Maitra, Anirban ;
Mendell, Joshua T. .
MOLECULAR CELL, 2007, 26 (05) :745-752
[5]   miR-34 miRNAs provide a barrier for somatic cell reprogramming [J].
Choi, Yong Jin ;
Lin, Chao-Po ;
Ho, Jaclyn J. ;
He, Xingyue ;
Okada, Nobuhiro ;
Bu, Pengcheng ;
Zhong, Yingchao ;
Kim, Sang Yong ;
Bennett, Margaux J. ;
Chen, Caifu ;
Ozturk, Arzu ;
Hicks, Geoffrey G. ;
Hannon, Greg J. ;
He, Lin .
NATURE CELL BIOLOGY, 2011, 13 (11) :1353-U154
[6]   Heme Oxygenase-1 Controls an HDAC4-miR-206 Pathway of Oxidative Stress in Rhabdomyosarcoma [J].
Ciesla, Maciej ;
Marona, Paulina ;
Kozakowska, Magdalena ;
Jez, Mateusz ;
Seczynska, Marta ;
Loboda, Agnieszka ;
Bukowska-Strakova, Karolina ;
Szade, Agata ;
Walawender, Magdalena ;
Kusior, Magdalena ;
Stepniewski, Jacek ;
Szade, Krzysztof ;
Krist, Bart ;
Yagensky, Oleksandr ;
Urbanik, Aleksandra ;
Kazanowska, Bernarda ;
Dulak, Jozef ;
Jozkowicz, Alicja .
CANCER RESEARCH, 2016, 76 (19) :5707-5718
[7]   Heme oxygenase-1 and carbon monoxide in vascular pathobiology [J].
Dulak, Jozef ;
Deshane, Jessy ;
Jozkowicz, Alicja ;
Agarwal, Anupam .
CIRCULATION, 2008, 117 (02) :231-241
[8]   Vitamin C Enhances the Generation of Mouse and Human Induced Pluripotent Stem Cells [J].
Esteban, Miguel Angel ;
Wang, Tao ;
Qin, Baoming ;
Yang, Jiayin ;
Qin, Dajiang ;
Cai, Jinglei ;
Li, Wen ;
Weng, Zhihui ;
Chen, Jiekai ;
Ni, Su ;
Chen, Keshi ;
Li, Yuan ;
Liu, Xiaopeng ;
Xu, Jianyong ;
Zhang, Shiqiang ;
Li, Feng ;
He, Wenzhi ;
Labuda, Krystyna ;
Song, Yancheng ;
Peterbauer, Anja ;
Wolbank, Susanne ;
Redl, Heinz ;
Zhong, Mei ;
Cai, Daozhang ;
Zeng, Lingwen ;
Pei, Duanqing .
CELL STEM CELL, 2010, 6 (01) :71-79
[9]   Suppression by CD4+CD25+ regulatory T cells is dependent on expression of heme oxygenase-1 in antigen-presenting cells [J].
George, James F. ;
Braun, Andrea ;
Brusko, Todd M. ;
Joseph, Reny ;
Bolisetty, Subhashini ;
Wasserfall, Clive H. ;
Atkinson, Mark A. ;
Agarwal, Anupam ;
Kapturczakt, Matthias H. .
AMERICAN JOURNAL OF PATHOLOGY, 2008, 173 (01) :154-160
[10]   Haem oxygenase-I: non-canonical roles in physiology and pathology [J].
Grochot-Przeczek, Anna ;
Dulak, Jozef ;
Jozkowicz, Alicja .
CLINICAL SCIENCE, 2012, 122 (3-4) :93-103