1. TRAP assists membrane protein topogenesis at the mammalian ER membrane
- Author
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Martin Spiess, Tina Junne, Nicole Sommer, Kai-Uwe Kalies, and Enno Hartmann
- Subjects
Small interfering RNA ,Vesicle-associated membrane protein 8 ,Receptors, Peptide ,Molecular Sequence Data ,Receptors, Cytoplasmic and Nuclear ,Membrane protein topogenesis ,Biology ,Endoplasmic Reticulum ,03 medical and health sciences ,RNA interference ,0302 clinical medicine ,Animals ,Humans ,Amino Acid Sequence ,Gene Silencing ,Molecular Biology ,030304 developmental biology ,Mammals ,0303 health sciences ,Membrane Glycoproteins ,Translocon associated proteins ,Membrane transport protein ,Endoplasmic reticulum ,Calcium-Binding Proteins ,Membrane Proteins ,Intracellular Membranes ,Cell Biology ,Translocon ,SEC61 Translocon ,Cell biology ,Protein Transport ,Membrane ,Membrane protein ,Gene Knockdown Techniques ,Multiprotein Complexes ,Sec61 complex ,biology.protein ,Mutant Proteins ,Hydrophobic and Hydrophilic Interactions ,030217 neurology & neurosurgery ,HeLa Cells - Abstract
Membrane protein insertion and topogenesis generally occur at the Sec61 translocon in the endoplasmic reticulum membrane. During this process, membrane spanning segments may adopt two distinct orientations with either their N- or C-terminus translocated into the ER lumen. While different topogenic determinants in membrane proteins, such as flanking charges, polypeptide folding, and hydrophobicity, have been identified, it is not well understood how the translocon and/or associated components decode them. Here we present evidence that the translocon-associated protein (TRAP) complex is involved in membrane protein topogenesis in vivo. Small interfering RNA (siRNA)-mediated silencing of the TRAP complex in HeLa cells enhanced the topology effect of mutating the flanking charges of a signal-anchor, but not of increasing signal hydrophobicity. The results suggest a role of the TRAP complex in moderating the ‘positive-inside’ rule.
- Published
- 2013
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