A Novel Molecular Mechanism of IKKε-Mediated AktmTOR Inhibition in the Cardiomyocyte Autophagy after Myocardial Infarction

Joint Authors

Chen, Xin
He, Shuai
Shen, Jian
Li, Liangpeng
Xu, Yueyue
Cao, Yide
Yin, Li
Tao, Zhonghao
Qiu, Zhibing
Chen, Wen

Source

Oxidative Medicine and Cellular Longevity

Issue

Vol. 2020, Issue 2020 (31 Dec. 2020), pp.1-12, 12 p.

Publisher

Hindawi Publishing Corporation

Publication Date

2020-07-17

Country of Publication

Egypt

No. of Pages

12

Main Subjects

Biology

Abstract EN

Autophagy of cardiomyocytes after myocardial infarction (MI) is an important factor affecting the prognosis of MI.

Excessive autophagy can lead to massive death of cardiomyocytes, which will seriously affect cardiac function.

IKKε plays a crucial role in the occurrence of autophagy, but the functional role in MI remains largely unknown.

To evaluate the impact of IKKε on the autophagy of cardiomyocytes after MI, MI was induced by surgical left anterior descending coronary artery ligation in IKKε knockout (KO) mice and wild-type (WT) mice.

Starvation of H9c2 cells with IKKε siRNA and rescued with IKKε overexpressed afterwards to test the mechanism of IKKε in autophagy in vitro.

Our results demonstrated that the expression of IKKε was upregulated in mice myocardial tissues which were consistent with cardiomyocyte autophagy after MI.

Significantly, the IKKε KO mice showed increased infarct size, decreased viable cardiomyocytes, and exacerbated cardiac dysfunction when compared with the wild-type mice.

Western blot and electron micrography analysis also revealed that loss of IKKε induces excessive cardiomyocyte autophagy and reduced the expression of p-Akt and p-mTOR.

Similar results were observed in IKKε siRNA H9c2 cells in vitro which were under starvation injury.

Notably, the levels of p-Akt and p-mTOR can restore in IKKε rescued cells.

In conclusion, our results indicated that IKKε protects cardiomyocyte survival by reduced autophagy following MI via regulation of the Akt/mTOR signaling pathway.

Thus, our study suggests that IKKε might represent a potential therapeutic target for the treatment of MI.

American Psychological Association (APA)

He, Shuai& Shen, Jian& Li, Liangpeng& Xu, Yueyue& Cao, Yide& Yin, Li…[et al.]. 2020. A Novel Molecular Mechanism of IKKε-Mediated AktmTOR Inhibition in the Cardiomyocyte Autophagy after Myocardial Infarction. Oxidative Medicine and Cellular Longevity،Vol. 2020, no. 2020, pp.1-12.
https://search.emarefa.net/detail/BIM-1205270

Modern Language Association (MLA)

He, Shuai…[et al.]. A Novel Molecular Mechanism of IKKε-Mediated AktmTOR Inhibition in the Cardiomyocyte Autophagy after Myocardial Infarction. Oxidative Medicine and Cellular Longevity No. 2020 (2020), pp.1-12.
https://search.emarefa.net/detail/BIM-1205270

American Medical Association (AMA)

He, Shuai& Shen, Jian& Li, Liangpeng& Xu, Yueyue& Cao, Yide& Yin, Li…[et al.]. A Novel Molecular Mechanism of IKKε-Mediated AktmTOR Inhibition in the Cardiomyocyte Autophagy after Myocardial Infarction. Oxidative Medicine and Cellular Longevity. 2020. Vol. 2020, no. 2020, pp.1-12.
https://search.emarefa.net/detail/BIM-1205270

Data Type

Journal Articles

Language

English

Notes

Includes bibliographical references

Record ID

BIM-1205270