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. 2020 Nov;1867(11):118800. doi: 10.1016/j.bbamcr.2020.118800

Table 1.

Organelle interaction, MCS components and physiological role. ABCD1/3, ATP-binding cassette sub-family D member 1/3; ACBD2/4/5, acyl-coenzyme A binding domain containing protein 2/4/5; ACSL1, long chain fatty-acid-CoA ligase 1; AMPK, 5' AMP-activated protein kinase; ATF6α, activating transcription factor 6α; DGAT2, diacylglycerol O-acyltransferase 2; DMT1, divalent metal transporter 1; ENDO, endosome; ER, endoplasmic reticulum; ERMES, ER-mitochondria encounter structure; FAPP1, phosphatidyl-four-phosphate-adaptor-protein-1; FATP1, fatty acid transporter protein 1; GRP75, glucose regulated protein 75; INF2, inverted formin 2; IP3R, 1,4,5-trisphosphate receptor; LD, lipid droplet; LYS, lysosome; MAVS, mitochondrial anti-viral signalling protein; MIGA2, mitoguardin 2 protein; MITO, mitochondria; NLRP3, nucleotide-binding oligomerization domain-like receptor 3; OSBP1/ORP5/8/9/10/11, oxysterol-binding protein/OSBP-related protein family; PEX, peroxin; PI(4,5)P2, phosphatidylinositol-4,5-bisphosphate; PLIN5, perilipin 5 protein; PM, plasma membrane; PO, peroxisome; STARD3, StAR related lipid transfer domain containing protein 3; STIM1, stromal interaction molecule 1; TBC1D15, TBC1 domain family member 15; TMEM135, transmembrane protein 135; VAP, vesicle-associated membrane protein; VDAC, voltage dependent anion channel; VPS13, vacuole protein sorting-associated protein 13. MCS proteins are mammalian unless otherwise stated. * MCS components listed are those mentioned in the text; this is not a complete list of all MCS components identified so far.

Organelles (MCS) MCS components* Physiological role References
Mitochondria – endoplasmic reticulum
Image 1
SigmaR1 (MITO), SEL1L (ER) Regulation of mitochondrial fission [50]
Spire1C (MITO) – INF2 (ER) tether [[45], [46], [47]]
IP3R (ER) – GRP75 – VDAC (MITO) tether Transfer of Ca2+ between ER and MITO; Ca2+ signalling via MITO-ER contacts [56,57]
PDZD8 (MITO/LYS?) – Unknown protein (ER) tether Dendritic Ca2+ homeostasis in mammalian neurons? [60,62]
Mmm1, Mdm12 and Mdm34 (ERMES, MITO), VPS13 (yeast) Lipid transfer; phospholipid synthesis [33,70,71]
VPS13A (MITO) – VAP (ER) Lipid transfer [73,127]
PTPIP51 (MITO) – ORP5/8 (ER) Transport of phosphatidylserine from the ER to MITO [78,79]
NLRP3 (ER) – MAVS (MITO) Immune signalling and inflammation [[82], [83], [84], [85]]
PTPIP51 (MITO) – VAPB (ER) tether Autophagosome formation/autophagy [[87], [88], [89]]
Mitochondria – lysosome
Image 2
Tethers unknown Regulation of mitochondrial dynamics/fission [41]
STARD3 (LYS) – tether? Cholesterol transport to MITO (compensatory mechanism for impaired LYS-ER cholesterol transport) [109]
Regulated by RAB7, TBC1D15 (binds FIS1 at MITO) [103,105,106]
DMT1 (ENDO/LYS, MITO) Iron transport from ENDO/LYS to MITO [[119], [120], [121], [122]]
Mitochondria – lipid droplets
Image 3
SNAP23, Unknown tether Lipid transfer between LD and MITO for mitochondrial β-oxidation; energy metabolism [124,126]
Regulated by AMPK [124]
DGAT2 (ER/LD), FATP1 (ER) LD expansion and biogenesis [128,133,134]
Unknown protein (MITO) – PLIN5 (LD) Regulation of LD hydrolysis [129,[135], [136], [137]]
MIGA2 (MITO) – unknown protein (LD), VAPB (ER) (triple contact site?) Lipogenesis [139]
Peroxisomes– endoplasmic reticulum
Image 4
ACBD4/5(PO) – VAPA/B (ER) tether, ACSL1 Coordination of fatty acid β-oxidation (PO) and elongation (ER); lipid transfer for ether-phospholipid synthesis; (phospho)lipid transfer for PO biogenesis (PO membrane expansion; regulation of PO positioning and mobility) [[149], [150], [151]]
Lipid synthesis for virus replication [171]
PI(4,5)P2 (PO) – E-SYTs Transport of cholesterol [207]
ABCD3 (PO) – ATF6α (ER) tether Regulation of ER stress; control of cellular stress response [167]
Pex3 (PO/ER) – Inp1 tether (yeast) PO inheritance in yeast; control of PO abundance [147,148]
Pex24, Pex32 (ER) – Pex11 (PO) tether (yeast) PO biogenesis and proliferation; positioning at the cell cortex; proper segregation to mother cells and buds [146]
Peroxisomes – lipid droplets
Image 5
ABCD1 (PO) – M1 spastin (LD) tether, ESCRTIII proteins IST1 and CHMP1B (LD) Fatty acid trafficking between LDs and PO; lipolysis [178]
Peroxisomes – mitochondria
Image 6
Pex11 (PO) – Mdm34 (ERMES, MITO) (yeast) Metabolic signalling? [164]
Pex34(PO), Fzo1 (MITO) tether (yeast) Regulation of fatty acid β-oxidation in yeast (metabolite transfer) [7]
ACBD2 (PO/MITO) Promotion of steroid biosynthesis (Leydig cells) [193]
Peroxisomes – lysosomes/endosomes
Image 7
PI(4,5)P2 (PO) – SYT7 (LYS) tether Cholesterol transport from LYS to PO [207]
TMEM135 (PO) Cholesterol transport; intracellular cholesterol distribution; regulation of ciliogenesis (cholesterol dependent) [204]
PxdA (ENDO) (fungi) PO movement via endosome ‘hitch-hiking’ [213,214]
Pex3 (PO - vacuole) tether (yeast) PO growth/expansion; lipid transfer? [146]
Golgi complex – endoplasmic reticulum
Image 8
PI(4)P (TGN) – OSBP1/ORP9/10/11 – VAP (ER) Direct transport of sterols [20,219,[222], [223], [224]]
PI(4)P (TGN) – CERT – VAP (ER) Translocation of ceramide from the ER to TGN [218,226]
PI(4)P (TGN) – FAPP1 – SAC1 (ER) – VAP (ER) PI4P homeostasis [228]
Plasma membrane – endoplasmic reticulum
Image 9
Osh2/3/6/7 (PM)
Osh2/3 (PM) – VAP (ER) tether (?) (yeast)
Transport of sterols from the ER to the PM in yeast [233]
Scs2/Scs22 (ER), Sac1 (ER), Ist2 (ER), Tcb1/2/3 (ER) (yeast) Phosphoinositide metabolism in yeast [238]
NIR2
C2CD2L/TMEM24
Phosphatidylinositol transport between the ER and the PM. [239,240]
ORAI1 (PM) – STIM1 (ER) Maintenance of Ca2+ homeostasis; CRAC channel activation and Ca2+ entry [243]
Plasma membrane – mitochondrian
Image 10
PI(4,5)P2 (PM) – Num1 – Mdm36 (MITO)/cardiolipin (MITO)/Scs2 (ER) tether (=MITO-PM-ER triple contact) (yeast) MITO inheritance; regulation of MITO distribution in yeast [247,249]
Mmr1 (MITO/ER) (yeast) [254]
Mfb1 (MITO) (yeast) [255]
MFN1 (MITO) – PKCζ (PM) tether (?) Epithelial-mesenchymal transition (EMT) in mammals. [256]
Tethers unknown Regulation of Ca2+ influx; mitochondrial Ca2+ import [257]