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p38 Mitogen-activated protein kinase regulates chamber-specific perinatal growth in heart
Tomohiro Yokota, … , Susumu Minamisawa, Yibin Wang
Tomohiro Yokota, … , Susumu Minamisawa, Yibin Wang
Published June 23, 2020
Citation Information: J Clin Invest. 2020;130(10):5287-5301. https://doi.org/10.1172/JCI135859.
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Research Article Cardiology

p38 Mitogen-activated protein kinase regulates chamber-specific perinatal growth in heart

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Abstract

In the mammalian heart, the left ventricle (LV) rapidly becomes more dominant in size and function over the right ventricle (RV) after birth. The molecular regulators responsible for this chamber-specific differential growth are largely unknown. We found that cardiomyocytes in the neonatal mouse RV had lower proliferation, more apoptosis, and a smaller average size compared with the LV. This chamber-specific growth pattern was associated with a selective activation of p38 mitogen-activated protein kinase (MAPK) activity in the RV and simultaneous inactivation in the LV. Cardiomyocyte-specific deletion of both the Mapk14 and Mapk11 genes in mice resulted in loss of p38 MAPK expression and activity in the neonatal heart. Inactivation of p38 activity led to a marked increase in cardiomyocyte proliferation and hypertrophy but diminished cardiomyocyte apoptosis, specifically in the RV. Consequently, the p38-inactivated hearts showed RV-specific enlargement postnatally, progressing to pulmonary hypertension and right heart failure at the adult stage. Chamber-specific p38 activity was associated with differential expression of dual-specific phosphatases (DUSPs) in neonatal hearts, including DUSP26. Unbiased transcriptome analysis revealed that IRE1α/XBP1–mediated gene regulation contributed to p38 MAPK–dependent regulation of neonatal cardiomyocyte proliferation and binucleation. These findings establish an obligatory role of DUSP/p38/IRE1α signaling in cardiomyocytes for chamber-specific growth in the postnatal heart.

Authors

Tomohiro Yokota, Jin Li, Jijun Huang, Zhaojun Xiong, Qing Zhang, Tracey Chan, Yichen Ding, Christoph Rau, Kevin Sung, Shuxun Ren, Rajan Kulkarni, Tzung Hsiai, Xinshu Xiao, Marlin Touma, Susumu Minamisawa, Yibin Wang

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Figure 7

DUSP26 expression upon chamber-specific p38 activation.

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DUSP26 expression upon chamber-specific p38 activation.
(A) Chamber-spec...
(A) Chamber-specific DUSP26 mRNA levels in the neonatal mouse heart at P1, P3, and P7 as indicated (n = 6; mean ± SEM). **P < 0.01, *P < 0.05 (LV vs. RV); #P < 0.05 (control vs. p38-cdKO). (B) p38 activation in cardiomyocytes treated with siRNA against Dusp26 (n = 3; mean ± SEM). (C) mRNA expression of genes differentially expressed in each ventricle in the siDusp26-treated cardiomyocytes (n = 6; mean ± SEM). (D and E) The levels of Ki67-positive (D) or Aurora B–positive (E) cardiomyocytes (CM) following different treatments with p38 inhibitor (p38i, SB202190) and siDusp26 (n = 4; mean ± SEM). ****P < 0.0001, ***P < 0.001, **P < 0.01, *P < 0.05 (vs. scrambled siRNA control [siNC]).

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ISSN: 0021-9738 (print), 1558-8238 (online)

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