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1.
Biochem Cell Biol ; 97(3): 307-314, 2019 06.
Article in English | MEDLINE | ID: mdl-30011386

ABSTRACT

The Vc-NhaP2 antiporter from Vibrio cholerae exchanges H+ for K+ or Na+ but not for the smaller Li+. The molecular basis of this unusual selectivity remains unknown. Phyre2 and Rosetta software were used to generate a structural model of the Vc-NhaP2. The obtained model suggested that a cluster of residues from different transmembrane segments (TMSs) forms a putative cation-binding pocket in the middle of the membrane: D133 and T132 from TMS V together with D162 and E157 of TMS VI. The model also suggested that L257, G258, and N259 from TMS IX together with T276, D273, Q280, and Y251 from TMS X as well as L289 and L342 from TMS XII form a transmembrane pathway for translocated ions with a built-in filter determining cation selectivity. Alanine-scanning mutagenesis of the identified residues verified the model by showing that structural modifications of the pathway resulted in altered cation selectivity and transport activity. In particular, L257A, G258A, Q280A, and Y251A variants gained Li+/H+ antiport capacity that was absent in the nonmutated antiporter. T276A, D273A, and L289A variants exclusively exchanged K+ for H+, while a L342A variant mediated Na+/H+ exchange only, thus maintaining strict alkali cation selectivity.


Subject(s)
Bacterial Proteins/metabolism , Sodium-Hydrogen Exchangers/metabolism , Vibrio cholerae/metabolism , Bacterial Proteins/chemistry , Bacterial Proteins/genetics , Cations/chemistry , Cations/metabolism , Sodium-Hydrogen Exchangers/chemistry , Sodium-Hydrogen Exchangers/genetics , Vibrio cholerae/chemistry
2.
J Fish Dis ; 36(11): 921-37, 2013 Nov.
Article in English | MEDLINE | ID: mdl-23448696

ABSTRACT

Farmed and wild salmonids are affected by a variety of skin conditions, some of which have significant economic and welfare implications. In many cases, the causes are not well understood, and one example is cold water strawberry disease of rainbow trout, also called red mark syndrome, which has been recorded in the UK since 2003. To date, there are no internationally agreed methods for describing these conditions, which has caused confusion for farmers and health professionals, who are often unclear as to whether they are dealing with a new or a previously described condition. This has resulted, inevitably, in delays to both accurate diagnosis and effective treatment regimes. Here, we provide a standardized methodology for the description of skin conditions of rainbow trout of uncertain aetiology. We demonstrate how the approach can be used to develop case definitions, using coldwater strawberry disease as an example.


Subject(s)
Fish Diseases/diagnosis , Oncorhynchus mykiss , Skin Diseases/veterinary , Animals , Diagnosis, Differential , Fish Diseases/pathology , Skin Diseases/diagnosis , Skin Diseases/pathology
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