Requirement for asparagine in the aquaporin NPA sequence signature motifs for cation exclusion

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Requirement for asparagine in the aquaporin NPA sequence signature motifs for cation exclusion. / Wree, Dorothea; Wu, Binghua; Zeuthen, Thomas; Beitz, Eric.

In: FEBS Journal, Vol. 278, No. 5, 01.03.2011, p. 740-8.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Wree, D, Wu, B, Zeuthen, T & Beitz, E 2011, 'Requirement for asparagine in the aquaporin NPA sequence signature motifs for cation exclusion', FEBS Journal, vol. 278, no. 5, pp. 740-8. https://doi.org/10.1111/j.1742-4658.2010.07993.x

APA

Wree, D., Wu, B., Zeuthen, T., & Beitz, E. (2011). Requirement for asparagine in the aquaporin NPA sequence signature motifs for cation exclusion. FEBS Journal, 278(5), 740-8. https://doi.org/10.1111/j.1742-4658.2010.07993.x

Vancouver

Wree D, Wu B, Zeuthen T, Beitz E. Requirement for asparagine in the aquaporin NPA sequence signature motifs for cation exclusion. FEBS Journal. 2011 Mar 1;278(5):740-8. https://doi.org/10.1111/j.1742-4658.2010.07993.x

Author

Wree, Dorothea ; Wu, Binghua ; Zeuthen, Thomas ; Beitz, Eric. / Requirement for asparagine in the aquaporin NPA sequence signature motifs for cation exclusion. In: FEBS Journal. 2011 ; Vol. 278, No. 5. pp. 740-8.

Bibtex

@article{84c3149c6e104226aafd47ef0ba9e7b7,
title = "Requirement for asparagine in the aquaporin NPA sequence signature motifs for cation exclusion",
abstract = "Two highly conserved NPA motifs are a hallmark of the aquaporin (AQP) family. The NPA triplets form N-terminal helix capping structures with the Asn side chains located in the centre of the water or solute-conducting channel, and are considered to play an important role in AQP selectivity. Although another AQP selectivity filter site, the aromatic/Arg (ar/R) constriction, has been well characterized by mutational analysis, experimental data concerning the NPA region--in particular, the Asn position--is missing. Here, we report on the cloning and mutational analysis of a novel aquaglyceroporin carrying one SPA motif instead of the NPA motif from Burkholderia cenocepacia, an epidemic pathogen of cystic fibrosis patients. Of 1357 AQP sequences deposited in RefSeq, we identified only 15 with an Asn exchange. Using direct and phenotypic permeability assays, we found that Asn and Ser are freely interchangeable at both NPA sites without affecting protein expression or water, glycerol and methylamine permeability. However, other mutations in the NPA region led to reduced permeability (S186C and S186D), to nonfunctional channels (N64D), or even to lack of protein expression (S186A and S186T). Using electrophysiology, we found that an analogous mammalian AQP1 N76S mutant excluded protons and potassium ions, but leaked sodium ions, providing an argument for the overwhelming prevalence of Asn over other amino acids. We conclude that, at the first position in the NPA motifs, only Asn provides efficient helix cap stabilization and cation exclusion, whereas other small residues compromise structural stability or cation exclusion but not necessarily water and solute permeability.",
author = "Dorothea Wree and Binghua Wu and Thomas Zeuthen and Eric Beitz",
note = "{\textcopyright} 2011 The Authors Journal compilation {\textcopyright} 2011 FEBS.",
year = "2011",
month = mar,
day = "1",
doi = "10.1111/j.1742-4658.2010.07993.x",
language = "English",
volume = "278",
pages = "740--8",
journal = "F E B S Journal",
issn = "1742-464X",
publisher = "Wiley-Blackwell",
number = "5",

}

RIS

TY - JOUR

T1 - Requirement for asparagine in the aquaporin NPA sequence signature motifs for cation exclusion

AU - Wree, Dorothea

AU - Wu, Binghua

AU - Zeuthen, Thomas

AU - Beitz, Eric

N1 - © 2011 The Authors Journal compilation © 2011 FEBS.

PY - 2011/3/1

Y1 - 2011/3/1

N2 - Two highly conserved NPA motifs are a hallmark of the aquaporin (AQP) family. The NPA triplets form N-terminal helix capping structures with the Asn side chains located in the centre of the water or solute-conducting channel, and are considered to play an important role in AQP selectivity. Although another AQP selectivity filter site, the aromatic/Arg (ar/R) constriction, has been well characterized by mutational analysis, experimental data concerning the NPA region--in particular, the Asn position--is missing. Here, we report on the cloning and mutational analysis of a novel aquaglyceroporin carrying one SPA motif instead of the NPA motif from Burkholderia cenocepacia, an epidemic pathogen of cystic fibrosis patients. Of 1357 AQP sequences deposited in RefSeq, we identified only 15 with an Asn exchange. Using direct and phenotypic permeability assays, we found that Asn and Ser are freely interchangeable at both NPA sites without affecting protein expression or water, glycerol and methylamine permeability. However, other mutations in the NPA region led to reduced permeability (S186C and S186D), to nonfunctional channels (N64D), or even to lack of protein expression (S186A and S186T). Using electrophysiology, we found that an analogous mammalian AQP1 N76S mutant excluded protons and potassium ions, but leaked sodium ions, providing an argument for the overwhelming prevalence of Asn over other amino acids. We conclude that, at the first position in the NPA motifs, only Asn provides efficient helix cap stabilization and cation exclusion, whereas other small residues compromise structural stability or cation exclusion but not necessarily water and solute permeability.

AB - Two highly conserved NPA motifs are a hallmark of the aquaporin (AQP) family. The NPA triplets form N-terminal helix capping structures with the Asn side chains located in the centre of the water or solute-conducting channel, and are considered to play an important role in AQP selectivity. Although another AQP selectivity filter site, the aromatic/Arg (ar/R) constriction, has been well characterized by mutational analysis, experimental data concerning the NPA region--in particular, the Asn position--is missing. Here, we report on the cloning and mutational analysis of a novel aquaglyceroporin carrying one SPA motif instead of the NPA motif from Burkholderia cenocepacia, an epidemic pathogen of cystic fibrosis patients. Of 1357 AQP sequences deposited in RefSeq, we identified only 15 with an Asn exchange. Using direct and phenotypic permeability assays, we found that Asn and Ser are freely interchangeable at both NPA sites without affecting protein expression or water, glycerol and methylamine permeability. However, other mutations in the NPA region led to reduced permeability (S186C and S186D), to nonfunctional channels (N64D), or even to lack of protein expression (S186A and S186T). Using electrophysiology, we found that an analogous mammalian AQP1 N76S mutant excluded protons and potassium ions, but leaked sodium ions, providing an argument for the overwhelming prevalence of Asn over other amino acids. We conclude that, at the first position in the NPA motifs, only Asn provides efficient helix cap stabilization and cation exclusion, whereas other small residues compromise structural stability or cation exclusion but not necessarily water and solute permeability.

U2 - 10.1111/j.1742-4658.2010.07993.x

DO - 10.1111/j.1742-4658.2010.07993.x

M3 - Journal article

C2 - 21205205

VL - 278

SP - 740

EP - 748

JO - F E B S Journal

JF - F E B S Journal

SN - 1742-464X

IS - 5

ER -

ID: 33232158