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1
Structural basis for substrate binding and specificity of a sodium-alanine symporter AgcS.
Proc Natl Acad Sci U S A. 2019 Feb 5;116(6):2086-2090. doi: 10.1073/pnas.1806206116. Epub 2019 Jan 18.
2
Identification of a second substrate-binding site in solute-sodium symporters.
J Biol Chem. 2015 Jan 2;290(1):127-41. doi: 10.1074/jbc.M114.584383. Epub 2014 Nov 14.
4
Extracellular loop 4 of the proline transporter PutP controls the periplasmic entrance to ligand binding sites.
Structure. 2014 May 6;22(5):769-80. doi: 10.1016/j.str.2014.03.011. Epub 2014 Apr 24.
5
Core Transmembrane Domain 6 Plays a Pivotal Role in the Transport Cycle of the Sodium/Proline Symporter PutP.
J Biol Chem. 2016 Dec 9;291(50):26208-26215. doi: 10.1074/jbc.M116.753103. Epub 2016 Oct 28.
6
Resculpting the binding pocket of APC superfamily LeuT-fold amino acid transporters.
Cell Mol Life Sci. 2018 Mar;75(5):921-938. doi: 10.1007/s00018-017-2677-8. Epub 2017 Oct 23.
7
The Na⁺/L-proline transporter PutP.
Front Biosci (Landmark Ed). 2012 Jan 1;17(2):745-59. doi: 10.2741/3955.
8
Structural and functional basis of amino acid specificity in the invertebrate cotransporter KAAT1.
J Physiol. 2007 Jun 15;581(Pt 3):899-913. doi: 10.1113/jphysiol.2007.132555. Epub 2007 Apr 5.
9
The sodium/substrate symporter family: structural and functional features.
FEBS Lett. 2002 Oct 2;529(1):73-7. doi: 10.1016/s0014-5793(02)03184-8.

引用本文的文献

1
Structure and function of the SIT1 proline transporter in complex with the COVID-19 receptor ACE2.
Nat Commun. 2024 Jun 29;15(1):5503. doi: 10.1038/s41467-024-48921-x.
3
Effect of NaCl stress on exoproteome profiles of EB2003A and EL2006H.
Front Microbiol. 2023 Aug 28;14:1206152. doi: 10.3389/fmicb.2023.1206152. eCollection 2023.
4
Modifications to a Biphenolic Antibacterial Compound: Activity against ESKAPE Pathogens.
ChemMedChem. 2023 Jan 17;18(2):e202200521. doi: 10.1002/cmdc.202200521. Epub 2022 Dec 3.
5
Structural basis for substrate specificity of heteromeric transporters of neutral amino acids.
Proc Natl Acad Sci U S A. 2021 Dec 7;118(49). doi: 10.1073/pnas.2113573118.
6
The structural basis of function and regulation of neuronal cotransporters NKCC1 and KCC2.
Commun Biol. 2021 Feb 17;4(1):226. doi: 10.1038/s42003-021-01750-w.
8
Structural basis of proton-coupled potassium transport in the KUP family.
Nat Commun. 2020 Jan 31;11(1):626. doi: 10.1038/s41467-020-14441-7.
9
Binding and transport of D-aspartate by the glutamate transporter homolog Glt.
Elife. 2019 Apr 10;8:e45286. doi: 10.7554/eLife.45286.

本文引用的文献

1
Classification Systems of Secondary Active Transporters.
Trends Pharmacol Sci. 2017 Mar;38(3):305-315. doi: 10.1016/j.tips.2016.11.008. Epub 2016 Dec 9.
2
Metabolic processes of Methanococcus maripaludis and potential applications.
Microb Cell Fact. 2016 Jun 10;15(1):107. doi: 10.1186/s12934-016-0500-0.
3
Shared Molecular Mechanisms of Membrane Transporters.
Annu Rev Biochem. 2016 Jun 2;85:543-72. doi: 10.1146/annurev-biochem-060815-014520. Epub 2016 Mar 21.
4
A Highly Conserved Bacterial D-Serine Uptake System Links Host Metabolism and Virulence.
PLoS Pathog. 2016 Jan 4;12(1):e1005359. doi: 10.1371/journal.ppat.1005359. eCollection 2016 Jan.
5
The Transporter Classification Database (TCDB): recent advances.
Nucleic Acids Res. 2016 Jan 4;44(D1):D372-9. doi: 10.1093/nar/gkv1103. Epub 2015 Nov 5.
6
Functional characterization of a member of alanine or glycine: cation symporter family in halotolerant cyanobacterium Aphanothece halophytica.
Biosci Biotechnol Biochem. 2015;79(2):230-5. doi: 10.1080/09168451.2014.968091. Epub 2014 Nov 25.
7
Expansion of the APC superfamily of secondary carriers.
Proteins. 2014 Oct;82(10):2797-811. doi: 10.1002/prot.24643. Epub 2014 Jul 31.
9
Common folds and transport mechanisms of secondary active transporters.
Annu Rev Biophys. 2013;42:51-72. doi: 10.1146/annurev-biophys-083012-130429.
10
The amino acid-polyamine-organocation superfamily.
J Mol Microbiol Biotechnol. 2012;22(2):105-13. doi: 10.1159/000338542. Epub 2012 May 22.

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