Tagging HhAqp1ab1 and SsAqp1ab2 constructs do not affect channel functionic Lake Baikal revealed through long-read metagenomics [Dataset]

Pf of X. laevis oocytes injected with water (W, controls), or expressing non-tagged or Flag-tagged Atlantic halibut HhAqp1ab1-WT or sole SsAqp1ab2-WT. Oocytes injected with SsAqp1ab2-WT were co-injected with non-tagged halibut YwhazLb and exposed to FSK. The data are the mean ± SEM (n = 12 oocytes per treatment, indicated with dots above each bar).

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Bibliographic Details
Main Authors: Ferré, Alba, Chauvigné, François, Zapater, Cinta, Finn, Roderick N., Cerdà, Joan
Format: dataset biblioteca
Language:English
Published: Plos One 2023-11-27
Subjects:Osmoregulatory systems develop, New regulatory mechanism, Also partially escape, Maximal egg hydration, Xink "> aquaporin, Mediated oocyte hydration, Marine teleosts causes, Aqp1ab2 may represent, Two water channels, Oocyte plasma membrane, Inhibition likely occurs, Isoforms cause dominant, Canonical channel trafficking, Oocyte hydration, Marine teleosts, Cause dominant, Plasma membrane, Membrane trafficking, Canonical channels, Canonical channel, Specific aquaporin, Negative inhibition, Inhibitory isoforms, aqp1ab2 isoforms, aqp1ab2 channel, Vital water, Ultimate degradation, Type variants, Truncated proteins, Truncated protein, Truncated aqp1ab2, Thus leaving, Subsequently highest, Recent studies, Physiologically modulated, Negative enhancement, Meiosis resumption, Intact protein, Findings suggest, Exon readthrough, Endoplasmic reticulum, Early embryos, Duplicated ywhaz, Differentially control, Degradation pathway, Binding proteins, 1 cluster,
Online Access:http://hdl.handle.net/10261/361168
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Summary:Pf of X. laevis oocytes injected with water (W, controls), or expressing non-tagged or Flag-tagged Atlantic halibut HhAqp1ab1-WT or sole SsAqp1ab2-WT. Oocytes injected with SsAqp1ab2-WT were co-injected with non-tagged halibut YwhazLb and exposed to FSK. The data are the mean ± SEM (n = 12 oocytes per treatment, indicated with dots above each bar).