Total Flavones of Abelmoschus manihot Ameliorates Podocyte Pyroptosis and Injury in High Glucose Conditions by Targeting METTL3-Dependent m6A Modification-Mediated NLRP3-Inflammasome Activation and PTEN/PI3K/Akt Signaling

被引:86
|
作者
Liu, Bu-Hui [1 ,2 ]
Tu, Yue [3 ]
Ni, Guang-Xia [3 ]
Yan, Jin [1 ]
Yue, Liang [3 ]
Li, Zi-Lin [3 ]
Wu, Jing-Jing [3 ]
Cao, Yu-Ting [3 ]
Wan, Zi-Yue [4 ]
Sun, Wei [1 ]
Wan, Yi-Gang [2 ]
机构
[1] Nanjing Univ Chinese Med, Affiliated Hosp, Nephrol Div, Nanjing, Peoples R China
[2] Nanjing Univ Chinese Med, Nanjing Drum Tower Hosp, Clin Coll, Dept Tradit Chinese Med, Nanjing, Peoples R China
[3] Nanjing Univ Chinese Med, Hlth Preservat & Rehabil Coll, Acupuncture Moxibust & Massage Coll, Dept Tradit Chinese Med Hlth Preservat, Nanjing, Peoples R China
[4] Hitotsubashi Univ, Grad Sch Social Sci, Fac Social Sci, Tokyo, Japan
基金
中国国家自然科学基金;
关键词
diabetic kidney disease; total flavones of Abelmoschus manihot; podocyte pyroptosis; NLRP3-inflammasome activation; PTEN; PI3K; Akt signaling; m(6)A modification; TRADITIONAL CHINESE MEDICINE; MOLECULAR-MECHANISMS; DIABETIC-NEPHROPATHY; DISEASE; PATHWAYS; PTEN; RATS;
D O I
10.3389/fphar.2021.667644
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Background: The total flavones of Abelmoschus manihot (TFA), a compound that is extracted from Abelmoschus manihot, has been widely used in China to reduce podocyte injury in diabetic kidney disease (DKD). However, the mechanisms underlying the therapeutic action of this compound have yet to be elucidated. Podocyte pyroptosis is characterized by activation of the NLRP3 inflammasome and plays an important role in inflammation-mediated diabetic kidneys. Regulation of the PTEN/PI3K/Akt pathway is an effective strategy for improving podocyte damage in DKD. Previous research has also shown that N6-methyladenosine (m(6)A) modification is involved in DKD and that m(6)A-modified PTEN regulates the PI3K/Akt pathway. In this study, we investigated whether TFA alleviates podocyte pyroptosis and injury by targeting m(6)A modification-mediated NLRP3-inflammasome activation and PTEN/PI3K/Akt signaling. Methods: We used MPC-5 cells under high glucose (HG) conditions to investigate the key molecules that are involved in podocyte pyroptosis and injury, including activation of the NLRP3 inflammasome and the PTEN/PI3K/Akt pathway. We detected alterations in the levels of three methyltransferases that are involved in m(6)A modification. We also investigated changes in the levels of these key molecules in podocytes with the overexpression or knockdown of methyltransferase-like (METTL)3. Results: Analysis showed that TFA and MCC950 protected podocytes against HG-induced pyroptosis and injury by reducing the protein expression levels of gasdermin D, interleukin-1 beta, and interleukin-18, and by increasing the protein expression levels of nephrin, ZO-1, WT1 and podocalyxin. TFA and 740Y-P inhibited activation of the NLRP3 inflammasome via the PI3K/Akt pathway by inhibiting the protein levels of NIMA-related kinase7, NLRP3, ASC, and caspase-1, and by increasing the protein expression levels of p-PI3K and p-Akt. TFA improved pyroptosis and injury in HG-stimulated podocytes by regulating METTL3-dependent m(6)A modification. Conclusion: Collectively, our data indicated that TFA could ameliorate pyroptosis and injury in podocytes under HG conditions by adjusting METTL3-dependent m(6)A modification and regulating NLRP3-inflammasome activation and PTEN/PI3K/Akt signaling. This study provides a better understanding of how TFA can protect podocytes in DKD.
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页数:21
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