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  3. The endoplasmic reticulum membrane protein complex localizes to the mitochondrial - endoplasmic reticulum interface and its subunits modulate phospholipid biosynthesis in Trypanosoma brucei.
 

The endoplasmic reticulum membrane protein complex localizes to the mitochondrial - endoplasmic reticulum interface and its subunits modulate phospholipid biosynthesis in Trypanosoma brucei.

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BORIS DOI
10.48350/169688
Date of Publication
May 2022
Publication Type
Article
Division/Institute

Departement für Chemi...

Institut für Biochemi...

Contributor
Iyer, Advaitha Subramanyam
Institut für Biochemie und Molekulare Medizin (IBMM)
Niemann, Moritz
Serricchio, Mauroorcid-logo
Institut für Biochemie und Molekulare Medizin (IBMM)
Dewar, Caroline Elizabeth
Departement für Chemie, Biochemie und Pharmazie (DCBP)
Oeljeklaus, Silke
Farine, Luce
Institut für Biochemie und Molekulare Medizin (IBMM)
Warscheid, Bettina
Schneider, André
Departement für Chemie, Biochemie und Pharmazie (DCBP)
Bütikofer, Peter
Institut für Biochemie und Molekulare Medizin (IBMM)
Subject(s)

500 - Science::570 - ...

600 - Technology::610...

500 - Science::540 - ...

Series
PLoS pathogens
ISSN or ISBN (if monograph)
1553-7366
Publisher
Public Library of Science
Language
English
Publisher DOI
10.1371/journal.ppat.1009717
PubMed ID
35500022
Description
The endoplasmic reticulum membrane complex (EMC) is a versatile complex that plays a key role in membrane protein biogenesis in the ER. Deletion of the complex has wide-ranging consequences including ER stress, disturbance in lipid transport and organelle tethering, among others. Here we report the function and organization of the evolutionarily conserved EMC (TbEMC) in the highly diverged eukaryote, Trypanosoma brucei. Using (co-) immunoprecipitation experiments in combination with mass spectrometry and whole cell proteomic analyses of parasites after depletion of select TbEMC subunits, we demonstrate that the TbEMC is composed of 9 subunits that are present in a high molecular mass complex localizing to the mitochondrial-endoplasmic reticulum interface. Knocking out or knocking down of single TbEMC subunits led to growth defects of T. brucei procyclic forms in culture. Interestingly, we found that depletion of individual TbEMC subunits lead to disruption of de novo synthesis of phosphatidylcholine (PC) or phosphatidylethanolamine (PE), the two most abundant phospholipid classes in T. brucei. Downregulation of TbEMC1 or TbEMC3 inhibited formation of PC while depletion of TbEMC8 inhibited PE synthesis, pointing to a role of the TbEMC in phospholipid synthesis. In addition, we found that in TbEMC7 knock-out parasites, TbEMC3 is released from the complex, implying that TbEMC7 is essential for the formation or the maintenance of the TbEMC.
Handle
https://boris-portal.unibe.ch/handle/20.500.12422/70513
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journal.ppat.1009717.pdftextAdobe PDF13.8 MBAttribution (CC BY 4.0)acceptedOpen
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