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HUANG Shuzhen, WANG Guangji, XIE Yuan. Advances in molecular mechanisms of organelle interaction and their role in disease development[J]. Journal of China Pharmaceutical University, 2019, 50(4): 389-396. DOI: 10.11665/j.issn.1000-5048.20190402
Citation: HUANG Shuzhen, WANG Guangji, XIE Yuan. Advances in molecular mechanisms of organelle interaction and their role in disease development[J]. Journal of China Pharmaceutical University, 2019, 50(4): 389-396. DOI: 10.11665/j.issn.1000-5048.20190402

Advances in molecular mechanisms of organelle interaction and their role in disease development

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  • Organelles have their special functions, they interact with each other and coordinate a series of important physiological functions at the same time. Organelle interaction occurs at membrane contact sites(MCSs), where the membranous organelle endoplasmic reticulum is the core, and specific tethered proteins at the membrane contact site bind to the organelle membrane and various protein complexes work together to perform specific functions, such as lipid transport, Ca2+ transfer, etc. This review studies on the structure and function of membrane contact sites and their key roles in organelle interactions, focusing on the connection between the endoplasmic reticulum and plasma membrane, mitochondria and Golgi, as well as the association between the key proteins at membrane contact sites and the occurrence and development of various diseases.
  • [1]
    Phillips MJ,Voeltz GK.Structure and function of ER membrane contact sites with other organelles[J].Nat Rev Mol Cell Biol,2016,17(2):69-82.
    [2]
    Kim YJ,Guzman-Hernandez ML,Wisniewski E,et al.Phosphatidylinositol and phosphatidic acid transport between the ER and plasma membrane during PLC activation requires the Nir2 protein[J].Biochem Soc Trans,2016,44(1):197-201.
    [3]
    Soboloff J,Rothberg BS,Madesh M,et al.STIM proteins:dynamic calcium signal transducers[J].Nat Rev Mol Cell Biol,2012,13(9):549-565.
    [4]
    Zhao M,Jia HH,Liu LZ,et al.Acetylcholine attenuated TNF-α-induced intracellular Ca2+ overload by inhibiting the formation of the NCX1-TRPC3-IP3R1 complex in human umbilical vein endothelial cells[J].J Mol Cell Cardiol,2017,107:1-12.
    [5]
    Chang CL,Chen YJ,Liou J.ER-plasma membrane junctions:why and how do we study them[J]?Biochim Biophys Acta Mol Cell Res,2017,1864(9):1494-1506.
    [6]
    Akolkar G,Pande J,Samson SE,et al.Thapsigargin decreases the Na+-Ca2+ exchanger mediated Ca2+ entry in pig coronary artery smooth muscle[J].Biochim Biophys Acta,2012,1818(3):730-737.
    [7]
    Godfraind T.Calcium channel blockers in cardiovascular pharmacotherapy[J].J Cardiovasc Pharmacol Ther,2014,19(6):501-515.
    [8]
    Nguyen NT,Han WD,Cao WM,et al.Store-operated calcium entry mediated by ORAI and STIM[J].Compr Physiol,2018,8(3):981-1002.
    [9]
    Pulina MV,Zulian A,Baryshnikov SG,et al.Cross talk between plasma membrane Na+/Ca2+ exchanger-1 and TRPC/Orai-containing channels:key players in arterial hypertension[J].Adv Exp Med Biol,2013,961:365-374.
    [10]
    Chen YF,Chen YT,Chiu WT,et al.Remodeling of calcium signaling in tumor progression[J].J Biomed Sci,2013,20(1):23.
    [11]
    Chung J,Torta F.PI4P/phosphatidylserine countertransport at ORP5-and ORP8-mediated ER-plasma membrane contacts[J].Science,2015,349(6246):428-432.
    [12]
    Dickson EJ,Jensen JB,Vivas O,et al.Dynamic formation of ER-PM junctions presents a lipid phosphatase to regulate phosphoinositides[J].J Cell Biol,2016,213(1):33-48.
    [13]
    Saheki Y,De Camilli P.Endoplasmic reticulum-plasma membrane contact sites[J].Annu Rev Biochem,2017,86:659-684.
    [14]
    Lyoo H,Dorobantu CM,van der Schaar HM,et al.Modulation of proteolytic polyprotein processing by coxsackievirus mutants resistant to inhibitors targeting phosphatidylinositol-4-kinase IIIβ or oxysterol binding protein[J].Antiviral Res,2017,147:86-90.
    [15]
    Ando H,Kawaai K,Bonneau B,et al.Remodeling of Ca2+ signaling in cancer:regulation of inositol 1,4,5-trisphosphate receptors through oncogenes and tumor suppressors[J].Adv Biol Regul,2018,68:64-76.
    [16]
    Honrath B,Metz I,Bendridi N,et al.Glucose-regulated protein 75 determines ER-mitochondrial coupling and sensitivity to oxidative stress in neuronal cells[J].Cell Death Discov,2017,3:17076.
    [17]
    Bononi A,Bonora M,Marchi S,et al.Identification of PTEN at the ER and MAMs and its regulation of Ca2+ signaling and apoptosis in a protein phosphatase-dependent manner[J].Cell Death Differ,2013,20(12):1631-1643.
    [18]
    Rizzuto R,De Stefani D,Raffaello A,et al.Mitochondria as sensors and regulators of calcium signalling[J].Nat Rev Mol Cell Biol,2012,13(9):566-578.
    [19]
    Giorgi C,Bonora M,Sorrentino G,et al.P53 at the endoplasmic reticulum regulates apoptosis in a Ca2+-dependent manner[J].Proc Natl Acad Sci U S A,2015,112(6):1779-1784.
    [20]
    Missiroli S,Bonora M,Patergnani S,et al.PML at mitochondria-associated membranes is critical for the repression of autophagy and cancer development[J].Cell Rep,2016,16(9):2415-2427.
    [21]
    Myhill N,Lynes EM,Nanji JA,et al.The subcellular distribution of calnexin is mediated by PACS-2[J].MBoC,2008,19(7):2777-2788.
    [22]
    de Brito OM,Scorrano L.Mitofusin 2 tethers endoplasmic reticulum to mitochondria[J].Nature,2008,456(7222):605-610.
    [23]
    Filadi R, Greotti E, Turacchio G, et al. Mitofusin 2 ablation increases endoplasmic reticulum-mitochondria coupling[J].Proc Natl Acad Sci U S A,2015,112(17):E2174-E2181.
    [24]
    Filadi R,Pendin D,Pizzo P.Mitofusin 2:from functions to disease[J].Cell Death Dis,2018,9(3):330.
    [25]
    Goguadze N,Zhuravliova E,Morin D,et al.Sigma-1 receptor agonists induce oxidative stress in mitochondria and enhance complex I activity in physiological condition but protect against pathological oxidative stress[J].Neurotox Res,2019,35(1):1-18.
    [26]
    Jia HM,Zhang Y,Huang YY.Imaging sigma receptors in the brain:new opportunities for diagnosis of Alzheimer′s disease and therapeutic development[J].Neurosci Lett,2019,691:3-10.
    [27]
    Park SJ,Lee SB,Suh Y,et al.DISC1 modulates neuronal stress responses by gate-keeping ER-mitochondria Ca2+ transfer through the MAM[J].Cell Rep,2017,21(10):2748-2759.
    [28]
    Rieusset J.The role of endoplasmic reticulum-mitochondria contact sites in the control of glucose homeostasis:an update[J].Cell Death Dis,2018,9(3):388.
    [29]
    Kim CA,Delépine M,Boutet E,et al.Association of a homozygous nonsense caveolin-1 mutation with Berardinelli-Seip congenital lipodystrophy[J].J Clin Endocrinol Metab,2008,93(4):1129-1134.
    [30]
    Murley A,Sarsam RD,Toulmay A,et al.Ltc1 is an ER-localized sterol transporter and a component of ER-mitochondria and ER-vacuole contacts[J].J Cell Biol,2015,209(4):539-548.
    [31]
    Giorgio M,Migliaccio E,Orsini F,et al.Electron transfer between cytochrome c and p66Shc generates reactive oxygen species that trigger mitochondrial apoptosis[J].Cell,2005,122(2):221-233.
    [32]
    Di Lisa F,Giorgio M,Ferdinandy P,et al.New aspects of p66Shc in ischaemia reperfusion injury and other cardiovascular diseases[J].Br J Pharmacol,2017,174(12):1690-1703.
    [33]
    Tian XY,Hu Y,Li MZ,et al.Carnosic acid attenuates acute ethanol-induced liver injury via a SIRT1/p66Shc-mediated mitochondrial pathway[J].Can J Physiol Pharmacol,2016,94(4):416-425.
    [34]
    Anelli T,Bergamelli L,Margittai E,et al.Ero1α regulates Ca2+ fluxes at the endoplasmic reticulum-mitochondria interface(MAM)[J].Antioxid Redox Signal,2012,16(10):1077-1087.
    [35]
    Gilady SY,Bui M,Lynes EM,et al.Ero1α requires oxidizing and normoxic conditions to localize to the mitochondria-associated membrane(MAM)[J].Cell Stress Chaperones,2010,15(5):619-629.
    [36]
    Wu X,Zhang LH,Miao Y,et al.Homocysteine causes vascular endothelial dysfunction by disrupting endoplasmic reticulum redox homeostasis[J].Redox Biol,2019,20:46-59.
    [37]
    Giorgi C,Missiroli S,Patergnani S,et al.Mitochondria-associated membranes:composition,molecular mechanisms,and physiopathological implications[J].Antioxid Redox Signal,2015,22(12):995-1019.
    [38]
    Friedman JR,Lackner LL,West M,et al.ER tubules mark sites of mitochondrial division[J].Science,2011,334(6054):358-362.
    [39]
    Chakrabarti R,Ji WK,Stan RV,et al.INF2-mediated actin polymerization at the ER stimulates mitochondrial calcium uptake,inner membrane constriction,and division[J].J Cell Biol,2018,217(1):251-268.
    [40]
    Wu WX,Li W,Chen H,et al.FUNDC1 is a novel mitochondrial-associated-membrane(MAM)protein required for hypoxia-induced mitochondrial fission and mitophagy[J].Autophagy,2016,12(9):1675-1676.
    [41]
    Arasaki K, Mikami Y, Shames SR, et al. Legionella effector Lpg1137 shuts down ER-mitochondria communication through cleavage of syntaxin 17[J].Nat Commun,2017,8:15406.
    [42]
    Zhou H,Zhu PJ,Wang J,et al.Pathogenesis of cardiac ischemia reperfusion injury is associated with CK2α-disturbed mitochondrial homeostasis via suppression of FUNDC1-related mitophagy[J].Cell Death Differ,2018,25(6):1080-1093.
    [43]
    Serasinghe MN,Chipuk JE.Mitochondrial fission in human diseases[J].Handb Exp Pharmacol,2017,240:159-188.
    [44]
    Plantinga TS,Joosten LA,van der Meer JW,et al.Modulation of inflammation by autophagy:consequences for Crohn′s disease[J].Curr Opin Pharmacol,2012,12(4):497-502.
    [45]
    Gomez-Navarro N,Miller E.Protein sorting at the ER-Golgi interface[J].J Cell Biol,2016,215(6):769-778.
    [46]
    Gong HJ,Feng L.Computational analysis of the roles of ER-Golgi network in the cell cycle[J].BMC Syst Biol,2014,8(Suppl 4):S3.
    [47]
    Credle JJ,Forcelli PA,Delannoy M,et al.Α-Synuclein-mediated inhibition of ATF6 processing into COPII vesicles disrupts UPR signaling in Parkinson′s disease[J].Neurobiol Dis,2015,76:112-125.
    [48]
    Hanada K,Kumagai K,Yasuda S,et al.Molecular machinery for non-vesicular trafficking of ceramide[J].Nature,2003,426(6968):803-809.
    [49]
    D′Angelo G,Polishchuk E,Di Tullio G,et al.Glycosphingolipid synthesis requires FAPP2 transfer of glucosylceramide[J].Nature,2007,449(7158):62-67.
    [50]
    Litvak V,Ramachandran S,et al.Maintenance of the diacylglycerol level in the Golgi apparatus by the Nir2 protein is critical for Golgi secretory function[J].Nat Cell Biol,2005,7(3):225-234.
    [51]
    Mesmin B,Bigay J,Moser von Filseck J,et al.A four-step cycle driven by PI(4)P hydrolysis directs sterol/PI(4)P exchange by the ER-Golgi tether OSBP[J].Cell,2013,155(4):830-843.
    [52]
    Moser von Filseck J,Mesmin B,Bigay J,et al.Building lipid ‘PIPelines’ throughout the cell by ORP/Osh proteins[J].Biochem Soc Trans,2014,42(5):1465-1470.
    [53]
    Yang JS,Zhao ZZ,Gu MX,et al.Release and uptake mechanisms of vesicular Ca2+ stores[J].Protein Cell,2019,10(1):8-19.
    [54]
    Roest G,La Rovere RM,Bultynck G,et al.IP3 receptor properties and function at membrane contact sites[J].Adv Exp Med Biol,2017,981:149-178.
    [55]
    Grimm C,Hassan S,Wahl-Schott C,et al.Role of TRPML and two-pore channels in endolysosomal cation homeostasis[J].J Pharmacol Exp Ther,2012,342(2):236-244.
    [56]
    Manczak M, Mao PZ, Calkins MJ, et al. Mitochondria-targeted antioxidants protect against amyloid-beta toxicity in Alzheimer′s disease neurons[J].J Alzheimers Dis,2010,20(Suppl 2):S609-S631.
    [57]
    Hall AR,Burke N,Dongworth RK,et al.Mitochondrial fusion and fission proteins:novel therapeutic targets for combating cardiovascular disease[J].Br J Pharmacol,2014,171(8):1890-1906.
    [58]
    Raturi A,Simmen T.Where the endoplasmic reticulum and the mitochondrion tie the knot:the mitochondria-associated membrane(MAM)[J].Biochim Biophys Acta,2013,1833(1):213-224.
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