タンパク質・ペプチド: Vacuolar protein sorting-associated protein 35
タンパク質・ペプチド: Vacuolar protein sorting-associated protein 26A
タンパク質・ペプチド: vacuolar protein sorting-associated protein 29
機能・相同性
機能・相同性情報
WNT ligand biogenesis and trafficking / neurotransmitter receptor transport, endosome to plasma membrane / negative regulation of protein localization / regulation of dendritic spine maintenance / mitochondrion-derived vesicle / negative regulation of protein homooligomerization / tubular endosome / regulation of terminal button organization / positive regulation of Wnt protein secretion / vacuolar protein processing ...WNT ligand biogenesis and trafficking / neurotransmitter receptor transport, endosome to plasma membrane / negative regulation of protein localization / regulation of dendritic spine maintenance / mitochondrion-derived vesicle / negative regulation of protein homooligomerization / tubular endosome / regulation of terminal button organization / positive regulation of Wnt protein secretion / vacuolar protein processing / retromer, cargo-selective complex / mitochondrion to lysosome vesicle-mediated transport / Golgi to vacuole transport / protein localization to organelle / negative regulation of lysosomal protein catabolic process / positive regulation of locomotion involved in locomotory behavior / negative regulation of late endosome to lysosome transport / positive regulation of dopamine biosynthetic process / positive regulation of dopamine receptor signaling pathway / protein localization to endosome / neurotransmitter receptor transport, endosome to postsynaptic membrane / retromer complex / vesicle-mediated transport in synapse / voluntary musculoskeletal movement / mitochondrial fragmentation involved in apoptotic process / transcytosis / dopaminergic synapse / regulation of synapse maturation / endocytic recycling / retrograde transport, endosome to Golgi / positive regulation of protein localization to cell periphery / lysosome organization / positive regulation of mitochondrial fission / regulation of postsynapse assembly / D1 dopamine receptor binding / intracellular protein transport / protein destabilization / modulation of chemical synaptic transmission / negative regulation of inflammatory response / positive regulation of protein catabolic process / positive regulation of canonical Wnt signaling pathway / late endosome / protein transport / presynapse / vesicle / early endosome / lysosome / postsynapse / neuron projection / endosome membrane / endosome / postsynaptic density / negative regulation of gene expression / neuronal cell body / synapse / positive regulation of gene expression / perinuclear region of cytoplasm / glutamatergic synapse / mitochondrion / metal ion binding / membrane / cytoplasm / cytosol 類似検索 - 分子機能
Vacuolar protein sorting protein 26 related / Vacuolar protein sorting-associated protein 26 / Vacuolar protein sorting-associated protein 35 / Vacuolar protein sorting-associated protein 35, C-terminal / Vacuolar protein sorting-associated protein 35 / Vacuolar protein sorting-associated protein 29 / Phosphodiesterase MJ0936/Vps29 / Calcineurin-like phosphoesterase domain, lpxH-type / Calcineurin-like phosphoesterase superfamily domain / Arrestin-like, C-terminal ...Vacuolar protein sorting protein 26 related / Vacuolar protein sorting-associated protein 26 / Vacuolar protein sorting-associated protein 35 / Vacuolar protein sorting-associated protein 35, C-terminal / Vacuolar protein sorting-associated protein 35 / Vacuolar protein sorting-associated protein 29 / Phosphodiesterase MJ0936/Vps29 / Calcineurin-like phosphoesterase domain, lpxH-type / Calcineurin-like phosphoesterase superfamily domain / Arrestin-like, C-terminal / Metallo-dependent phosphatase-like / Armadillo-type fold 類似検索 - ドメイン・相同性
Vacuolar protein sorting-associated protein 26A / Vacuolar protein sorting-associated protein 35 / Vacuolar protein sorting-associated protein 29 類似検索 - 構成要素
National Institutes of Health/National Institute of General Medical Sciences (NIH/NIGMS)
米国
引用
ジャーナル: Sci Adv / 年: 2021 タイトル: De novo macrocyclic peptides for inhibiting, stabilizing, and probing the function of the retromer endosomal trafficking complex. 著者: Kai-En Chen / Qian Guo / Timothy A Hill / Yi Cui / Amy K Kendall / Zhe Yang / Ryan J Hall / Michael D Healy / Joanna Sacharz / Suzanne J Norwood / Sachini Fonseka / Boyang Xie / Robert C Reid ...著者: Kai-En Chen / Qian Guo / Timothy A Hill / Yi Cui / Amy K Kendall / Zhe Yang / Ryan J Hall / Michael D Healy / Joanna Sacharz / Suzanne J Norwood / Sachini Fonseka / Boyang Xie / Robert C Reid / Natalya Leneva / Robert G Parton / Rajesh Ghai / David A Stroud / David P Fairlie / Hiroaki Suga / Lauren P Jackson / Rohan D Teasdale / Toby Passioura / Brett M Collins / 要旨: The retromer complex (Vps35-Vps26-Vps29) is essential for endosomal membrane trafficking and signaling. Mutation of the retromer subunit Vps35 causes late-onset Parkinson’s disease, while viral and ...The retromer complex (Vps35-Vps26-Vps29) is essential for endosomal membrane trafficking and signaling. Mutation of the retromer subunit Vps35 causes late-onset Parkinson’s disease, while viral and bacterial pathogens can hijack the complex during cellular infection. To modulate and probe its function, we have created a novel series of macrocyclic peptides that bind retromer with high affinity and specificity. Crystal structures show that most of the cyclic peptides bind to Vps29 via a Pro-Leu–containing sequence, structurally mimicking known interactors such as TBC1D5 and blocking their interaction with retromer in vitro and in cells. By contrast, macrocyclic peptide RT-L4 binds retromer at the Vps35-Vps26 interface and is a more effective molecular chaperone than reported small molecules, suggesting a new therapeutic avenue for targeting retromer. Last, tagged peptides can be used to probe the cellular localization of retromer and its functional interactions in cells, providing novel tools for studying retromer function.