JOURNAL OF SHANDONG UNIVERSITY (HEALTH SCIENCES) ›› 2014, Vol. 52 ›› Issue (7): 16-21.doi: 10.6040/j.issn.1671-7554.0.2013.743

Previous Articles     Next Articles

Effects of down-regulating of acetyl CoA carboxylase 2 on intracellular lipid accumulation and epithelial mesenchymal transition in high glucose cultured human renal proximal tubular epithelial cells

HUANG Jing1, XU Ying1, LIU Yi2, XIN Wei3, ZHAO Xu1, LIU Lei1, WAN Qiang1   

  1. 1. Department of Nephrology, Shandong Provincial Hospital Affiliated to Shandong University, Jinan 250021, Shandong, China;
    2. Department of Respiratory Diseases, Shandong Provincial Hospital Affiliated to Shandong University, Jinan 250021, Shandong, China;
    3. Central Laboratory, Shandong Provincial Hospital Affiliated to Shandong University, Jinan 250021, Shandong, China
  • Received:2013-12-09 Revised:2014-06-10 Online:2014-07-10 Published:2014-07-10

Abstract: Objective To explore the effects and mechanisms of RNA interference mediated by lentivirus down-regulating acetyl CoA carboxylase 2 (ACC2) on intracellular lipid accumulation and epithelial mesenchymal transition (EMT) in high glucose cultured human renal proximal tubular epithelial cells (HKC). Methods The lentivirus vector based on small hairpin RNA (shRNA) targeting ACC2 was constructed and delivered to HKC cells cultured in high glucose. Then the cells were divided into 5 groups: normal glucose group (5.5 mmol/L glucose, NG group), high glucose group (30 mmol/L glucose, HG group), high osmotic pressure control group (5.5mmol/L glucose plus 24.5 mmol/L mannitol, HO group), ACC2-shRNA group (30 mmol/L glucose plus ACC2-shRNA lentivirous), and NC-shRNA group (30 mmol/L glucose plus empty lentivirous carrying the green fluorescent protein as negative control). After treated for 96 h, morphology change of HKC cells was observed under microscope, intracellular lipid accumulation was obtained by Oil Red O staining, and E-cadherin and α-SMA protein levels were detected by Western blotting. Results High glucose induced morphology change and intracellular lipid accumulation of cultured HKC cells. Protein level of E-cadherin was decreased, while α-SMA was increased(P<0.05). Interference of ACC2 successfully restored high glucose stimulated morphology change and cellular lipid accumulation; the expression level of E-cadherin protein was increased and α-SMA protein was reduced. Conclusion Interference of ACC2 can ameliorate high glucosestimulated cellular lipid accumulation and epithelial mesenchymal transition, then improve renal fibrosis.

Key words: Acetyl CoA carboxylase 2, Diabetic nephropathy, RNA interference, Lipotoxicity, Epithelial mesenchymal transition

CLC Number: 

  • R587.1
[1] Murea M, Freedman B I, Parks J S, et al. Lipotoxicity in diabetic nephropathy: the potential role of fatty acid oxidation[J]. Clin J Am Soc Nephrol, 2010, 5(12): 2373-2379.
[2] 黄燕飞, 刘志红. 脂毒性与2型糖尿病及其并发症的关系[J]. 肾脏病与透析肾移植杂志, 2002, 11(1): 58-63.
[3] Maeda S, Kobayashi M, Araki S, et al. A single nucleotide polymorphism within the acetyl-coenzyme A carboxylase beta gene is associated with proteinuria in patients with type 2 diabetes[J]. PLoS genetics, 2010, 6(2): e1000842. doi:10.1371/journal.pgen.1000842.
[4] 李能娟, 李红. 肾小管上皮细胞表型转化与糖尿病肾病[J]. 国际内分泌代谢杂志, 2006,26(4):277-279.
[5] 李荟, 马宏. 肾小管上皮细胞-间充质细胞转分化在肾间质纤维化中的作用[J]. 国外医学·泌尿系统分册, 2005, 25(3): 426-429.
[6] Lv Z M, Wang Q, Wan Q, et al. The role of the p38 MAPK signaling pathway in high glucose-induced epithelial-mesenchymal transition of cultured human renal tubular epithelial cells[J]. PloS one, 2011, 6(7): e22806. doi:10.1371/journal.pone.0022806.
[7] Jun H, Song Z, Chen W, et al. In vivo and in vitro effects of SREBP-1 on diabetic renal tubular lipid accumulation and RNAi-mediated gene silencing study[J]. Histochem Cell Biol, 2009, 131(3): 327-345.
[8] Hao J, Zhu L, Zhao S, et al. PTEN ameliorates high glucose-induced lipid deposits through regulating SREBP-1/FASN/ACC pathway in renal proximal tubular cells[J]. Exp Cell Res, 2011, 317(11): 1629-1639.
[9] 梁真, 程桦. 脂毒性与 2 型糖尿病[J]. 国外医学·内科学分册, 2004, 31(2): 50-53.
[10] Kume S, Uzu T, Araki S, et al. Role of altered renal lipid metabolism in the development of renal injury induced by a high-fat diet[J]. J Am Soc Nephrol, 2007, 18(10): 2715-2723.
[11] Wang Z, Jiang T, Li J, et al. Regulation of renal lipid metabolism, lipid accumulation, and glomerulosclerosis in FVBdb/db mice with type 2 diabetes[J]. Diabetes, 2005, 54(8): 2328-2335.
[12] Jiang T, Wang X X, Scherzer P, et al. Farnesoid X receptor modulates renal lipid metabolism, fibrosis, and diabetic nephropathy[J]. Diabetes, 2007, 56(10): 2485-2493.
[13] Sun L, Halaihel N, Zhang W, et al. Role of sterol regulatory element-binding protein 1 in regulation of renal lipid metabolism and glomerulosclerosis in diabetes mellitus[J]. J Biol Chem, 2002, 277(21): 18919-18927.
[14] Abu-Elheiga L, Brinkley W R, Zhong L, et al. The subcellular localization of acetyl-CoA carboxylase 2[J]. Proc Nat Acad Sci U S A, 2000, 97(4): 1444-1449.
[15] McGarry J D, Mannaerts G P, Foster D W. A possible role for malonyl-CoA in the regulation of hepatic fatty acid oxidation and ketogenesis[J]. J Clin Invest, 1977, 60(1): 265.
[16] Abu-Elheiga L, Matzuk M M, Abo-Hashema K A H, et al. Continuous fatty acid oxidation and reduced fat storage in mice lacking acetyl-CoA carboxylase 2[J]. Science, 2001, 291(5513): 2613-2616.
[17] Kobayashi M, Watada H, Kawamori R, et al. Overexpression of acetyl-coenzyme A carboxylase beta increases proinflammatory cytokines in cultured human renal proximal tubular epithelial cells[J]. Clin Exp Nephrol, 2010, 14(4): 315-324.
[1] ZHANG Baowen, LEI Xiangli, LI Jinna, LUO Xiangjun, ZOU Rong. miR-21-5p targeted TIMP3 to inhibit proliferation and extracellular matrix accumulation of mesangial cells in Type II diabetic nephropathy mice [J]. Journal of Shandong University (Health Sciences), 2020, 1(7): 7-14.
[2] TU Yan, LI Zhenjiang, TANG Aiping, FEI Yan, LI Huihui, LI Jian, HE Wenfeng. RNAi-mediated silencing of CD147 inhibits the proliferation and invasion of leukemic cells SHI-1 [J]. JOURNAL OF SHANDONG UNIVERSITY (HEALTH SCIENCES), 2014, 52(9): 1-5.
[3] DONG Zhaojing, SHANG Qianwen, GUO Chun, ZHANG Lining, WANG Qun . Effect of PDCD4 siRNA on the lipid accumulation in macrophages#br# [J]. JOURNAL OF SHANDONG UNIVERSITY (HEALTH SCIENCES), 2014, 52(4): 18-21.
[4] ZHANG Jin-hang1, ZHANG Lu-wei1, LIU Xin-nong2, TIAN Jun1. Expression of Tribble3 in db/db mice  renal tissues and the possible role in renal fibrosis [J]. JOURNAL OF SHANDONG UNIVERSITY (HEALTH SCIENCES), 2014, 52(2): 38-43.
[5] LV Yanfeng, JIANG Hua, WANG Jianxin, ZHANG Chengbo. Inhibitive effect of EZH2-specific shRNA on SW480 cells and the impact of 5-FU [J]. JOURNAL OF SHANDONG UNIVERSITY (HEALTH SCIENCES), 2014, 52(11): 11-15.
[6] YANG Zhiying, LIU Xiangchun, GUAN Guangju. Expression changes of methionine sulfoxide reductase B1 in the kidneys of instreptozocin-induced diabetic mice and its relationship with oxidative stress [J]. JOURNAL OF SHANDONG UNIVERSITY (HEALTH SCIENCES), 2014, 52(10): 29-34.
[7] Lv Yan-feng1, HAN Bing-bing2, YU Hua-long1, WANG Jian-xin1. Construction and effect of shRNA vector silencing EZH2 expression [J]. JOURNAL OF SHANDONG UNIVERSITY (HEALTH SCIENCES), 2013, 51(9): 31-34.
[8] ZHU Shou-rong1, ZHANG Rui2, CAO Yong-qian1, FENG Zhang1, WANG Yi-bing1. The effect of the survivin-siRNA targeting lentivirus vector on human malignant melanoma cell line A375 [J]. JOURNAL OF SHANDONG UNIVERSITY (HEALTH SCIENCES), 2013, 51(5): 54-57.
[9] XU Yang-yang1,2, JIANG Zheng1,2, ZHOU Wei3, JIANG Yu-quan1, 2, LI Xin-gang1, 2. Construction of a lentiviral vector carrying shRNA against HIF-1α and generation of a GL261 cell line stably transfected with this vector [J]. JOURNAL OF SHANDONG UNIVERSITY (HEALTH SCIENCES), 2013, 51(2): 12-16.
[10] XU Wei, CHANG Hong, ZHAI Yun-peng. Construction of Livin shRNA eukaryotic expression vector and its influence on chemotherapeutic sensitivity of HepG2 cells [J]. JOURNAL OF SHANDONG UNIVERSITY (HEALTH SCIENCES), 2013, 51(12): 20-24.
[11] LIU Qing-liang1, MU Xiao-yan1, WANG-Jing2, CHI Xiang-yu2, ZHANG Min3, MA Wei-xia3. Inhibitory effects of RNA interference and Erlotinib by blocking epidermal
growth factor receptor pathway on the proliferation of A549 cells
[J]. JOURNAL OF SHANDONG UNIVERSITY (HEALTH SCIENCES), 2012, 50(9): 11-.
[12] WANG Jie1, CHANG Xiang-di1, LI Bing1, XIAO Xiao-yan1, ZHANG Yang1, ZHEN Jun-hui2, JIANG Hong3, HU Zhao1. Effect of mycophenolate mofetil on renal tubular epithelial
cells trans-differentiation in diabetic rats
[J]. JOURNAL OF SHANDONG UNIVERSITY (HEALTH SCIENCES), 2012, 50(6): 14-19.
[13] CHANG Xiang-di1, WANG Jie1, LI Bing1, ZHEN Jun-hui2, JIANG Hong3, HU Zhao1. Protective effect of FK506 on glomerular podocyte in
early diabetic nephropathy rats
[J]. JOURNAL OF SHANDONG UNIVERSITY (HEALTH SCIENCES), 2012, 50(6): 20-25.
[14] MENG You-sheng, WANG Xiu-wen, WANG Ya-wei, TIAN Tian-tian. Effect of bFGF-siRNA-mediated gene silencing on proliferation and
apoptosis in the lung cancer cell line A549
[J]. JOURNAL OF SHANDONG UNIVERSITY (HEALTH SCIENCES), 2012, 50(3): 50-54.
[15] ZHANG Rui-yu, L Zhi-mei, LIU Yi, ZHANG Peng-ju, WAN Qiang, WANG Rong. The mRNA-stabilizing factor Human-Antigen R regulates renal cyclinD1
post-transcriptional expression in human mesangial cells
[J]. JOURNAL OF SHANDONG UNIVERSITY (HEALTH SCIENCES), 2012, 50(2): 47-52.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!