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Identification of critical amino acids involved in α 1 ‐ β interaction in voltage‐dependent Ca 2+ channels
Author(s) -
De Waard Michel,
Scott Victoria E.S.,
Pragnell Marlon,
Campbell Kevin P.
Publication year - 1996
Publication title -
febs letters
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.593
H-Index - 257
eISSN - 1873-3468
pISSN - 0014-5793
DOI - 10.1016/0014-5793(96)00007-5
Subject(s) - identification (biology) , amino acid , chemistry , biophysics , physics , stereochemistry , biochemistry , biology , botany
In voltage‐dependent Ca 2+ channels, the α 1 and β subunits interact via two cytoplasmic regions defined as the Alpha Interaction Domain (AID) and Beta Interaction Domain (BID). Several novel amino acids for that interaction have now been mapped in both domains by point mutations. It was found that three of the nine amino acids in AID and four of the eight BID amino acids tested were essential for the interaction. Whereas the important AID amino acids were clustered around five residues, the important BID residues were more widely distributed within a larger 16 amino acid sequence. The affinity of the AID A GST fusion protein for the four interacting β 1 b BID mutants was not significantly altered compared with the wild‐type β 1 b despite the close localization of mutated residues to disruptive BID amino acids. Expression of these interactive β mutants with the full‐length α 1 A subunit only slightly modified the stimulation efficiency when compared with the wild‐type β 1 b subunit. Our data suggest that non‐disruptive BID sequence alterations do not dramatically affect the β subunit‐induced current stimulation.