Coupling of proton and substrate translocation in the transport cycle of mitochondrial carriers
about
A self-sequestered calmodulin-like Ca²⁺ sensor of mitochondrial SCaMC carrier and its implication to Ca²⁺-dependent ATP-Mg/P(i) transportMitochondrial uncoupling protein 2 structure determined by NMR molecular fragment searchingStructures of yeast mitochondrial ADP/ATP carriers support a domain-based alternating-access transport mechanismThe mitochondrial carrier Rim2 co-imports pyrimidine nucleotides and iron.Being right on Q: shaping eukaryotic evolutionThe substrate specificity of mitochondrial carriers: mutagenesis revisitedPhysiological and pathological roles of mitochondrial SLC25 carriersThe LysE Superfamily of Transport Proteins Involved in Cell Physiology and PathogenesisThe transporter-opsin-G protein-coupled receptor (TOG) superfamily.Dynamic flux balance analysis of the metabolism of Saccharomyces cerevisiae during the shift from fully respirative or respirofermentative metabolic states to anaerobiosis.Mapping conformational heterogeneity of mitochondrial nucleotide transporter in uninhibited states.Substrate-modulated ADP/ATP-transporter dynamics revealed by NMR relaxation dispersion.Is cancer a severe delayed hypersensitivity reaction and histamine a blueprint?Evolution, structure and function of mitochondrial carriers: a review with new insights.How to deal with oxygen radicals stemming from mitochondrial fatty acid oxidation.A functional NMR for membrane proteins: dynamics, ligand binding, and allosteric modulation.UCP1: A transporter for H+ and fatty acid anions.Mapping the nucleotide binding site of uncoupling protein 1 using atomic force microscopy.Formation of a cytoplasmic salt bridge network in the matrix state is a fundamental step in the transport mechanism of the mitochondrial ADP/ATP carrier.Substrate specificity of the two mitochondrial ornithine carriers can be swapped by single mutation in substrate binding site.Yeast nutrient transceptors provide novel insight in the functionality of membrane transporters.Single-nucleotide evolution quantifies the importance of each site along the structure of mitochondrial carriers.Arabidopsis calcium-binding mitochondrial carrier proteins as potential facilitators of mitochondrial ATP-import and plastid SAM-import.How the mitochondrion was shaped by radical differences in substrates: what carnitine shuttles and uncoupling tell us about mitochondrial evolution in response to ROS.Evolutionary analyses of mitochondrial carrier family of dictyostelids.
P2860
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P2860
Coupling of proton and substrate translocation in the transport cycle of mitochondrial carriers
description
2010 nî lūn-bûn
@nan
2010 թուականի Օգոստոսին հրատարակուած գիտական յօդուած
@hyw
2010 թվականի օգոստոսին հրատարակված գիտական հոդված
@hy
2010年の論文
@ja
2010年論文
@yue
2010年論文
@zh-hant
2010年論文
@zh-hk
2010年論文
@zh-mo
2010年論文
@zh-tw
2010年论文
@wuu
name
Coupling of proton and substra ...... ycle of mitochondrial carriers
@ast
Coupling of proton and substra ...... ycle of mitochondrial carriers
@en
Coupling of proton and substra ...... ycle of mitochondrial carriers
@nl
type
label
Coupling of proton and substra ...... ycle of mitochondrial carriers
@ast
Coupling of proton and substra ...... ycle of mitochondrial carriers
@en
Coupling of proton and substra ...... ycle of mitochondrial carriers
@nl
prefLabel
Coupling of proton and substra ...... ycle of mitochondrial carriers
@ast
Coupling of proton and substra ...... ycle of mitochondrial carriers
@en
Coupling of proton and substra ...... ycle of mitochondrial carriers
@nl
P3181
P1476
Coupling of proton and substra ...... ycle of mitochondrial carriers
@en
P2093
Alan J Robinson
P304
P3181
P356
10.1016/J.SBI.2010.06.004
P407
P577
2010-07-01T00:00:00Z