Please use this identifier to cite or link to this item: https://doi.org/10.1242/jcs.136754
Title: TMEM115 is an integral membrane protein of the Golgi complex involved in retrograde transport
Authors: Ong, Y.S
Tran, T.H.T
Gounkov, N.V
Hong, W 
Keywords: agglutinin
beta cop protein
brefeldin A
coat protein complex I
conserved oligomeric golgi 3 complex protein
dimer
endoplasmic reticulum golgi intermediate compartment protein 53
golgi a4 protein
golgin A5 protein
helix pomatia agglutinin
lectin
membrane protein
oligomer
peanut agglutinin
protein
TMEM 115 protein
unclassified drug
membrane protein
PL6 protein, human
protein binding
vesicular transport protein
amino terminal sequence
article
carboxy terminal sequence
cellular distribution
chromosome
controlled study
cytoplasm
endoplasmic reticulum
enzyme glycosylation
gene mutation
gene overexpression
gene silencing
Golgi complex
Helix pomatia
human
human cell
immunofluorescence
immunoprecipitation
in vitro study
membrane transport
priority journal
protein binding
protein expression
protein glycosylation
protein interaction
protein targeting
signal transduction
animal
Golgi complex
HeLa cell line
metabolism
mouse
protein transport
Animals
Golgi Apparatus
HeLa Cells
Humans
Membrane Proteins
Mice
Protein Binding
Protein Transport
Vesicular Transport Proteins
Issue Date: 2014
Publisher: Company of Biologists Ltd
Citation: Ong, Y.S, Tran, T.H.T, Gounkov, N.V, Hong, W (2014). TMEM115 is an integral membrane protein of the Golgi complex involved in retrograde transport. Journal of Cell Science 127 (13) : 2825-2839. ScholarBank@NUS Repository. https://doi.org/10.1242/jcs.136754
Rights: Attribution 4.0 International
Abstract: Searching and evaluating the Human Protein Atlas for transmembrane proteins enabled us to identify an integral membrane protein, TMEM115, that is enriched in the Golgi complex. Biochemical and cell biological analysis suggested that TMEM115 has four candidate transmembrane domains located in the N-terminal region. Both the N- and C-terminal domains are oriented towards the cytoplasm. Immunofluorescence analysis supports that TMEM115 is enriched in the Golgi cisternae. Functionally, TMEM115 knockdown or overexpression delays Brefeldin-A-induced Golgi-to-ER retrograde transport, phenocopying cells with mutations or silencing of the conserved oligomeric Golgi (COG) complex. Coimmunoprecipitation and in vitro binding experiments reveals that TMEM115 interacts with the COG complex, and might self-interact to form dimers or oligomers. A short region (residues 206-229) immediately to the C-terminal side of the fourth transmembrane domain is both necessary and sufficient for Golgi targeting. Knockdown of TMEM115 also reduces the binding of the lectins peanut agglutinin (PNA) and Helix pomatia agglutinin (HPA), suggesting an altered O-linked glycosylation profile. These results establish that TMEM115 is an integral membrane protein of the Golgi stack regulating Golgi-to-ER retrograde transport and is likely to be part of the machinery of the COG complex. © 2014.
Source Title: Journal of Cell Science
URI: https://scholarbank.nus.edu.sg/handle/10635/180178
ISSN: 0021-9533
DOI: 10.1242/jcs.136754
Rights: Attribution 4.0 International
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