Mitochondria Permeability Transition versus Necroptosis in Oxalate-Induced AKI

被引:108
作者
Mulay, Shrikant Ramesh [1 ,2 ]
Honarpisheh, Mohsen M. [1 ]
Foresto-Neto, Orestes [1 ]
Shi, Chongxu [1 ]
Desai, Jyaysi [1 ]
Zhao, Zhi Bo [1 ]
Marschner, Julian A. [1 ]
Popper, Bastian [3 ]
Buhl, Ewa Miriam [4 ]
Boor, Peter [4 ]
Linkermann, Andreas [5 ]
Liapis, Helen [6 ,7 ]
Bilyy, Rostyslav [8 ]
Herrmann, Martin [9 ]
Romagnani, Paola [10 ]
Belevich, Ilya [11 ]
Jokitalo, Eija [11 ]
Becker, Jan U. [12 ]
Anders, Hans-Joachim [1 ]
机构
[1] Ludwig Maximilians Univ Munchen, Univ Hosp, Dept Med 4, Div Nephrol, Munich, Germany
[2] Cent Drug Res Inst, Pharmacol Div, CSIR, Sec 10, Lucknow 226031, Uttar Pradesh, India
[3] Ludwig Maximilians Univ Munchen, Biomed Ctr, Core Facil Anim Models, Planegg Martinsried, Germany
[4] Rhein Westfalische TH Univ Aachen, Inst Pathol, Div Nephrol, Aachen, Germany
[5] Tech Univ Dresden, Univ Hosp Carl Gustav Carus, Dept Internal Med 3, Div Nephrol, Dresden, Germany
[6] Washington Univ, Sch Med, Dept Pathol & Immunol, St Louis, MO USA
[7] Arkana Labs, Little Rock, AR USA
[8] Danylo Halytsky Lviv Natl Med Univ, Dept Histol Cytol & Embryol, Lvov, Ukraine
[9] Univ Erlangen Nurnberg, Dept Internal Med 3, Erlangen, Germany
[10] Univ Florence, Excellence Ctr Res Transfer & High Educ Dev Novo, Florence, Italy
[11] Univ Helsinki, Inst Biotechnol, Electron Microscopy Unit, Helsinki, Finland
[12] Univ Cologne, Inst Pathol, Cologne, Germany
来源
JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY | 2019年 / 30卷 / 10期
关键词
CYCLOPHILIN-D; CELL-DEATH; RENAL-FAILURE; CRYSTALS; ACTIVATION; MECHANISMS;
D O I
10.1681/ASN.2018121218
中图分类号
R5 [内科学]; R69 [泌尿科学(泌尿生殖系疾病)];
学科分类号
100201 [内科学]; 100221 [泌尿外科学];
摘要
Background Serum oxalate levels suddenly increase with certain dietary exposures or ethylene glycol poisoning and are a well known cause of AKI. Established contributors to oxalate crystal-induced renal necroinflammation include the NACHT, LRR and PYD domains-containing protein-3 (NLRP3) inflamma-some and mixed lineage kinase domain-like (MLKL) protein-dependent tubule necroptosis. These studies examined the role of a novel form of necrosis triggered by altered mitochondrial function. Methods To better understand the molecular pathophysiology of oxalate-induced AIK, we conducted in vitro studies in mouse and human kidney cells and in vivo studies in mice, including wild-type mice and knockout mice deficient in peptidylprolyl isomerase F (Ppif) or deficient in both Ppif and Mlkl. Results Crystals of calcium oxalate, monosodium urate, or calcium pyrophosphate dihydrate, as well as silica microparticles, triggered cell necrosis involving PPIF-dependent mitochondrial permeability transition. This process involves crystal phagocytosis, lysosomal cathepsin leakage, and increased release of reactive oxygen species. Mice with acute oxalosis displayed calcium oxalate crystals inside distal tubular epithelial cells associated with mitochondrial changes characteristic of mitochondrial permeability transition. Mice lacking Ppif or MIkI or given an inhibitor of mitochondrial permeability transition displayed attenuated oxalate-induced AKI. Dual genetic deletion of Ppif and Mlkl or pharmaceutical inhibition of necroptosis was partially redundant, implying interlinked roles of these two pathways of regulated necrosis in acute oxalosis. Similarly, inhibition of mitochondrial permeability transition suppressed crystal-induced cell death in primary human tubular epithelial cells. PPIF and phosphorylated MLKL localized to injured tubules in diagnostic human kidney biopsies of oxalosis-related AKI. Conclusions Mitochondrial permeability transition-related regulated necrosis and necroptosis both contribute to oxalate-induced AKI, identifying PPIF as a potential molecular target for renoprotective intervention.
引用
收藏
页码:1857 / 1869
页数:13
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