1994FEBS LettersRequires access

A brain‐specific γ subunit of G protein freed from the corresponding β subunit under non‐denaturing conditions

Rika Morishita, Kanefusa Kato, Tomiko Asano

Open publisher page 10 citations

Abstract

It has generally been accepted that the beta and gamma subunits of G proteins are tightly associated and can only be dissociated under denaturing conditions. However, one form of the gamma subunit, free of the beta subunit, was isolated under non-denaturing conditions during the purification of beta gamma complexes from bovine brain. Amino acid sequence analysis revealed that the N-terminus of this gamma subunit was not blocked and its sequence was identical to that of a brain-specific gamma subunit, gamma 3. Among three forms of gamma subunits observed in bovine brain (gamma 2, gamma 3 and gamma 7), gamma 3 was the only form that was not modified at the N-terminus. Although the physiological significance of the free form of gamma 3 is not clear, these results suggest that N-terminal modification of gamma subunits may be important for interaction with beta subunits.

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What this paper is about

It has generally been accepted that the beta and gamma subunits of G proteins are tightly associated and can only be dissociated under denaturing conditions. However, one form of the gamma subunit, free of the beta subunit, was isolated under non-denaturing conditions during the purification of beta gamma complexes from bovine brain. Amino acid sequence analysis revealed that the N-terminus of this gamma subunit was not blocked and its sequence was identical to that of a brain-specific gamma subunit, gamma 3. Among three forms of gamma subunits observed in bovine brain (gamma 2, gamma 3 and gamma 7), gamma 3 was the only form that was not modified at the N-terminus. Although the physiological significance of the free form of gamma 3 is not clear, these results suggest that N-terminal modification of gamma subunits may be important for interaction with beta subunits.

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Available abstract

It has generally been accepted that the beta and gamma subunits of G proteins are tightly associated and can only be dissociated under denaturing conditions. However, one form of the gamma subunit, free of the beta subunit, was isolated under non-denaturing conditions during the purification of beta gamma complexes from bovine brain. Amino acid sequence analysis revealed that the N-terminus of this gamma subunit was not blocked and its sequence was identical to that of a brain-specific gamma subunit, gamma 3. Among three forms of gamma subunits observed in bovine brain (gamma 2, gamma 3 and gamma 7), gamma 3 was the only form that was not modified at the N-terminus. Although the physiological significance of the free form of gamma 3 is not clear, these results suggest that N-terminal modification of gamma subunits may be important for interaction with beta subunits.

Key concepts: Protein subunit, Gamma subunit, BETA (programming language), Biochemistry, Peptide sequence, Molecular biology, Biophysics, Chemistry

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