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  1. Home
  2. Indian Institute of Technology Madras
  3. Publication2
  4. Encephalopathy-causing mutations in Gβ<inf>1</inf> (GNB1) alter regulation of neuronal GIRK channels
 
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Encephalopathy-causing mutations in Gβ<inf>1</inf> (GNB1) alter regulation of neuronal GIRK channels

Date Issued
24-09-2021
Author(s)
Reddy, Haritha P.
Yakubovich, Daniel
Keren-Raifman, Tal
Tabak, Galit
Tsemakhovich, Vladimir A.
Pedersen, Maria H.
Shalomov, Boris
Colombo, Sophie
Goldstein, David B.
Javitch, Jonathan A.
Amal Kanti Bera 
Indian Institute of Technology, Madras
Dascal, Nathan
DOI
10.1016/j.isci.2021.103018
Abstract
Mutations in the GNB1 gene, encoding the Gβ1 subunit of heterotrimeric G proteins, cause GNB1 Encephalopathy. Patients experience seizures, pointing to abnormal activity of ion channels or neurotransmitter receptors. We studied three Gβ1 mutations (K78R, I80N and I80T) using computational and functional approaches. In heterologous expression models, these mutations did not alter the coupling between G protein-coupled receptors to Gi/o, or the Gβγ regulation of the neuronal voltage-gated Ca2+ channel CaV2.2. However, the mutations profoundly affected the Gβγ regulation of the G protein-gated inwardly rectifying potassium channels (GIRK, or Kir3). Changes were observed in Gβ1 protein expression levels, Gβγ binding to cytosolic segments of GIRK subunits, and in Gβγ function, and included gain-of-function for K78R or loss-of-function for I80T/N, which were GIRK subunit-specific. Our findings offer new insights into subunit-dependent gating of GIRKs by Gβγ, and indicate diverse etiology of GNB1 Encephalopathy cases, bearing a potential for personalized treatment.
Volume
24
Subjects
  • Biological sciences

  • Molecular neuroscienc...

  • Neuroscience

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