The Shaker family of voltage-gated K channels has been thought of as an animal-specific ion channel family that diversified in concert with nervous systems. It comprises four functionally independent gene subfamilies (Kv1-4) that encode diverse neuronal K currents. Comparison of animal genomes predicts that only the Kv1 subfamily was present in the animal common ancestor. Here, we show that some choanoflagellates, the closest protozoan sister lineage to animals, also have Shaker family K channels. Choanoflagellate Shaker family channels are surprisingly most closely related to the animal Kv2-4 subfamilies which were believed to have evolved only after the divergence of ctenophores and sponges from cnidarians and bilaterians. Structural modeling predicts that the choanoflagellate channels share a T1 Zn binding site with Kv2-4 channels that is absent in Kv1 channels. We functionally expressed three Shakers from (SheliKvT1.1-3) in oocytes. SheliKvT1.1-3 function only in two heteromultimeric combinations (SheliKvT1.1/1.2 and SheliKvT1.1/1.3) and encode fast N-type inactivating K channels with distinct voltage dependence that are most similar to the widespread animal Kv1-encoded A-type Shakers. Structural modeling of the T1 assembly domain supports a preference for heteromeric assembly in a 2:2 stoichiometry. These results push the origin of the Shaker family back into a common ancestor of metazoans and choanoflagellates. They also suggest that the animal common ancestor had at least two distinct molecular lineages of Shaker channels, a Kv1 subfamily lineage predicted from comparison of animal genomes and a Kv2-4 lineage predicted from comparison of animals and choanoflagellates.
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http://dx.doi.org/10.1073/pnas.2407461121 | DOI Listing |
J Pharmacopuncture
December 2024
Department of Applied Nutrition and Food Technology, Islamic University, Kushtia, Bangladesh.
Objectives: (Sonn.), belonging to the Sapindaceae family, has historically been used for the treatment of gastrointestinal ailments, including ulcers, gastritis, diarrhea, and infections Plants in the Sapindaceae family have demonstrated potential anthelmintic effects, while the efficacy of remains barely investigated. seeds are often discarded as waste; however, utilizing these seeds promotes sustainable practices and may provide a natural alternative to conventional anthelmintics.
View Article and Find Full Text PDFCytojournal
November 2024
Department of Neurosurgery, Guangzhou Red Cross Hospital, Jinan University, Guangzhou, China.
Objective: Potassium voltage-gated channel sub-family A member 1 (Kv1.1), as a shaker homolog potassium channel, displays a special mechanism for posttranscriptional regulation called RNA editing. Adenosine deaminase acting on RNA 2 (ADAR2) can cause abnormal editing or loss of normal editing, which results in cell damage and related diseases.
View Article and Find Full Text PDFPlant Sci
December 2024
School of Life Sciences, Shaanxi Normal University, Xi'an 710119, China. Electronic address:
In animal cells, Gα subunit of the heterotrimeric G proteins can bind to both the N-terminal and C-terminal domains of G-protein-activated inwardly rectifying K channels (GIRKs) to inhibit their activities. In Arabidopsis guard cells, the Gα subunit GPA1 mediates multiple stimuli-regulated stomatal movements via inhibiting guard cell inward-rectifying K (K) current, but it remains unclear whether GPA1 directly interacts with and inhibits the activities of K channels. Here, we found that GPA1 interacted with the transmembrane domain rather than the intracellular domain of the Shaker family K channel KAT1.
View Article and Find Full Text PDFeNeuro
January 2025
Department of Biology, University of Iowa, Iowa City, Iowa 52242
The full complement of ion channels which influence insect auditory mechanotransduction and the mechanisms by which their influence is exerted remain unclear. (K4), a family member encoding voltage-gated potassium channels in , has been shown to localize to dendrites in some neuron types, suggesting the potential role of in hearing, including mechanotransduction. A GFP trap was used to visualize the localization of the channel in Johnston's organ neurons responsible for hearing in the antenna.
View Article and Find Full Text PDFElife
December 2024
Department of Neurobiology, University of Chicago, Chicago, United States.
In amniotes, head motions and tilt are detected by two types of vestibular hair cells (HCs) with strikingly different morphology and physiology. Mature type I HCs express a large and very unusual potassium conductance, g, which activates negative to resting potential, confers very negative resting potentials and low input resistances, and enhances an unusual non-quantal transmission from type I cells onto their calyceal afferent terminals. Following clues pointing to K1.
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