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本文引用的文献

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Calcium-independent phospholipases A2 and their roles in biological processes and diseases.不依赖钙的磷脂酶A2及其在生物过程和疾病中的作用。
J Lipid Res. 2015 Sep;56(9):1643-68. doi: 10.1194/jlr.R058701. Epub 2015 May 28.
2
The podocyte power-plant disaster and its contribution to glomerulopathy.足细胞的能量工厂灾难及其对肾小球病的影响。
Front Endocrinol (Lausanne). 2014 Dec 15;5:209. doi: 10.3389/fendo.2014.00209. eCollection 2014.
3
Calcium-independent phospholipase A2γ enhances activation of the ATF6 transcription factor during endoplasmic reticulum stress.非钙依赖性磷脂酶A2γ在内质网应激期间增强ATF6转录因子的激活。
J Biol Chem. 2015 Jan 30;290(5):3009-20. doi: 10.1074/jbc.M114.592261. Epub 2014 Dec 9.
4
Complement-mediated glomerular injury is reduced by inhibition of protein-tyrosine phosphatase 1B.补体介导的肾小球损伤可通过抑制蛋白酪氨酸磷酸酶 1B 减少。
Am J Physiol Renal Physiol. 2014 Sep 1;307(5):F634-47. doi: 10.1152/ajprenal.00191.2014. Epub 2014 Jul 23.
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Proteostasis in endoplasmic reticulum--new mechanisms in kidney disease.内质网中的蛋白质稳态——肾脏疾病的新机制。
Nat Rev Nephrol. 2014 Jul;10(7):369-78. doi: 10.1038/nrneph.2014.67. Epub 2014 Apr 22.
6
Mpv17 in mitochondria protects podocytes against mitochondrial dysfunction and apoptosis in vivo and in vitro.Mpv17 在体内和体外均可保护足细胞免受线粒体功能障碍和细胞凋亡的影响。
Am J Physiol Renal Physiol. 2014 Jun 1;306(11):F1372-80. doi: 10.1152/ajprenal.00608.2013. Epub 2014 Mar 5.
7
Nephrin missense mutations: induction of endoplasmic reticulum stress and cell surface rescue by reduction in chaperone interactions.Nephrin错义突变:通过减少伴侣蛋白相互作用诱导内质网应激及细胞表面挽救
Physiol Rep. 2013 Sep;1(4):e00086. doi: 10.1002/phy2.86. Epub 2013 Sep 17.
8
Complement-mediated cellular injury.补体介导的细胞损伤。
Semin Nephrol. 2013 Nov;33(6):586-601. doi: 10.1016/j.semnephrol.2013.08.009.
9
Vps34 deficiency reveals the importance of endocytosis for podocyte homeostasis.Vps34 缺乏揭示了内吞作用对于足细胞稳态的重要性。
J Am Soc Nephrol. 2013 Apr;24(5):727-43. doi: 10.1681/ASN.2012070700. Epub 2013 Mar 14.
10
Complement-mediated activation of calcium-independent phospholipase A2γ: role of protein kinases and phosphorylation.补体介导的钙非依赖性磷脂酶 A2γ的激活:蛋白激酶和磷酸化的作用。
J Biol Chem. 2013 Feb 8;288(6):3871-85. doi: 10.1074/jbc.M112.396614. Epub 2012 Dec 20.

钙非依赖性磷脂酶A2γ的基因消融诱导小鼠肾小球损伤。

Genetic Ablation of Calcium-independent Phospholipase A2γ Induces Glomerular Injury in Mice.

作者信息

Elimam Hanan, Papillon Joan, Kaufman Daniel R, Guillemette Julie, Aoudjit Lamine, Gross Richard W, Takano Tomoko, Cybulsky Andrey V

机构信息

From the Department of Medicine, McGill University Health Centre Research Institute, McGill University, Montreal, Quebec H4A 3J1, Canada and.

the Department of Medicine, Washington University School of Medicine, St. Louis, Missouri 63110.

出版信息

J Biol Chem. 2016 Jul 8;291(28):14468-82. doi: 10.1074/jbc.M115.696781. Epub 2016 May 12.

DOI:10.1074/jbc.M115.696781
PMID:27226532
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4938171/
Abstract

Glomerular visceral epithelial cells (podocytes) play a critical role in the maintenance of glomerular permselectivity. Podocyte injury, manifesting as proteinuria, is the cause of many glomerular diseases. We reported previously that calcium-independent phospholipase A2γ (iPLA2γ) is cytoprotective against complement-mediated glomerular epithelial cell injury. Studies in iPLA2γ KO mice have demonstrated an important role for iPLA2γ in mitochondrial lipid turnover, membrane structure, and metabolism. The aim of the present study was to employ iPLA2γ KO mice to better understand the role of iPLA2γ in normal glomerular and podocyte function as well as in glomerular injury. We show that deletion of iPLA2γ did not cause detectable albuminuria; however, it resulted in mitochondrial structural abnormalities and enhanced autophagy in podocytes as well as loss of podocytes in aging KO mice. Moreover, after induction of anti-glomerular basement membrane nephritis in young mice, iPLA2γ KO mice exhibited significantly increased levels of albuminuria, podocyte injury, and loss of podocytes compared with wild type. Thus, iPLA2γ has a protective functional role in the normal glomerulus and in glomerulonephritis. Understanding the role of iPLA2γ in glomerular pathophysiology provides opportunities for the development of novel therapeutic approaches to glomerular injury and proteinuria.

摘要

肾小球脏层上皮细胞(足细胞)在维持肾小球滤过选择性中起关键作用。足细胞损伤表现为蛋白尿,是许多肾小球疾病的病因。我们先前报道,钙非依赖性磷脂酶A2γ(iPLA2γ)对补体介导的肾小球上皮细胞损伤具有细胞保护作用。对iPLA2γ基因敲除小鼠的研究表明,iPLA2γ在线粒体脂质周转、膜结构和代谢中起重要作用。本研究的目的是利用iPLA2γ基因敲除小鼠更好地了解iPLA2γ在正常肾小球和足细胞功能以及肾小球损伤中的作用。我们发现,iPLA2γ基因缺失并未导致可检测到的蛋白尿;然而,它导致足细胞线粒体结构异常、自噬增强以及衰老基因敲除小鼠足细胞丢失。此外,在年轻小鼠诱导抗肾小球基底膜肾炎后,与野生型相比,iPLA2γ基因敲除小鼠的蛋白尿水平、足细胞损伤和足细胞丢失显著增加。因此,iPLA2γ在正常肾小球和肾小球肾炎中具有保护性功能作用。了解iPLA2γ在肾小球病理生理学中的作用为开发针对肾小球损伤和蛋白尿的新型治疗方法提供了机会。