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Structural basis for conductance by the archaeal aquaporin AqpM at 1.68 Å
John K. Lee
, David Kozono
, Jonathan Remis
, Yoshichika Kitagawa
, Peter Agre
, Robert M. Stroud
Biochemistry, Molecular Biology, and Biophysics (TMED)
Research output
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Contribution to journal
›
Article
›
peer-review
145
Scopus citations
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Keyphrases
Conductance
100%
Archaeal
100%
Aquaporin
100%
Aquaglyceroporin
66%
Glycerol
33%
Archaebacteria
33%
X-ray Crystallography
33%
Side Chain
33%
Lumen
33%
Leucine
33%
Histidine Residue
33%
Channel Protein
33%
Glycine Residue
33%
Water Channel
33%
Methanothermobacter Marburgensis
33%
Transmembrane Channel
33%
Biochemistry, Genetics and Molecular Biology
Conductance
100%
Aquaporin
100%
Glycerol
33%
Static Electricity
33%
Channel Protein
33%
Archaeon
33%
Methanothermobacter Marburgensis
33%
Histidine
33%
Isoleucine
33%