MEASUREMENT OF INTERHELICAL ELECTROSTATIC INTERACTIONS IN THE GCN4 LEUCINE-ZIPPER
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LUMB, KJ
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MIT, HOWARD HUGHES MED INST, WHITEHEAD INST BIOMED RES, DEPT BIOL, CAMBRIDGE, MA 02142 USAMIT, HOWARD HUGHES MED INST, WHITEHEAD INST BIOMED RES, DEPT BIOL, CAMBRIDGE, MA 02142 USA
LUMB, KJ
[1
]
KIM, PS
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MIT, HOWARD HUGHES MED INST, WHITEHEAD INST BIOMED RES, DEPT BIOL, CAMBRIDGE, MA 02142 USAMIT, HOWARD HUGHES MED INST, WHITEHEAD INST BIOMED RES, DEPT BIOL, CAMBRIDGE, MA 02142 USA
KIM, PS
[1
]
机构:
[1] MIT, HOWARD HUGHES MED INST, WHITEHEAD INST BIOMED RES, DEPT BIOL, CAMBRIDGE, MA 02142 USA
The dimerization specificity of the bZIP transcription factors resides in the leucine zipper region. It is commonly assumed that electrostatic interactions between oppositely charged amino acid residues on different helices of the leucine zipper contribute favorably to dimerization specificity. Crystal structures of the GCN4 leucine zipper contain interhelical salt bridges between Glu(20) and Lys(15') and between Glu(22) and Lys(27'). C-13-nuclear magnetic resonance measurements of the glutamic acid pK(a) values at physiological ionic strength indicate that the salt bridge involving Glu(22) does not contribute to stability and that the salt bridge involving Glu(20) is unfavorable, relative to the corresponding situation with a neutral (protonated) Glu residue, Moreover, the substitution of Glu(20) by glutamine is stabilizing. Thus, salt bridges will not necessarily contribute favorably to bZIP dimerization specificity and may indeed be unfavorable, relative to alternative neutral-charge interactions.
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IMPERIAL CANC RES FUND, BIOCHEM CELL NUCLEUS LAB, LONDON WC2A 3PX, ENGLANDIMPERIAL CANC RES FUND, BIOCHEM CELL NUCLEUS LAB, LONDON WC2A 3PX, ENGLAND
AMATI, B
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BROOKS, MW
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IMPERIAL CANC RES FUND, BIOCHEM CELL NUCLEUS LAB, LONDON WC2A 3PX, ENGLANDIMPERIAL CANC RES FUND, BIOCHEM CELL NUCLEUS LAB, LONDON WC2A 3PX, ENGLAND
BROOKS, MW
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LEVY, N
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IMPERIAL CANC RES FUND, BIOCHEM CELL NUCLEUS LAB, LONDON WC2A 3PX, ENGLANDIMPERIAL CANC RES FUND, BIOCHEM CELL NUCLEUS LAB, LONDON WC2A 3PX, ENGLAND
LEVY, N
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LITTLEWOOD, TD
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IMPERIAL CANC RES FUND, BIOCHEM CELL NUCLEUS LAB, LONDON WC2A 3PX, ENGLANDIMPERIAL CANC RES FUND, BIOCHEM CELL NUCLEUS LAB, LONDON WC2A 3PX, ENGLAND
LITTLEWOOD, TD
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EVAN, GI
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IMPERIAL CANC RES FUND, BIOCHEM CELL NUCLEUS LAB, LONDON WC2A 3PX, ENGLANDIMPERIAL CANC RES FUND, BIOCHEM CELL NUCLEUS LAB, LONDON WC2A 3PX, ENGLAND
EVAN, GI
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LAND, H
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IMPERIAL CANC RES FUND, BIOCHEM CELL NUCLEUS LAB, LONDON WC2A 3PX, ENGLANDIMPERIAL CANC RES FUND, BIOCHEM CELL NUCLEUS LAB, LONDON WC2A 3PX, ENGLAND
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IMPERIAL CANC RES FUND, BIOCHEM CELL NUCLEUS LAB, LONDON WC2A 3PX, ENGLANDIMPERIAL CANC RES FUND, BIOCHEM CELL NUCLEUS LAB, LONDON WC2A 3PX, ENGLAND
AMATI, B
;
BROOKS, MW
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IMPERIAL CANC RES FUND, BIOCHEM CELL NUCLEUS LAB, LONDON WC2A 3PX, ENGLANDIMPERIAL CANC RES FUND, BIOCHEM CELL NUCLEUS LAB, LONDON WC2A 3PX, ENGLAND
BROOKS, MW
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LEVY, N
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IMPERIAL CANC RES FUND, BIOCHEM CELL NUCLEUS LAB, LONDON WC2A 3PX, ENGLANDIMPERIAL CANC RES FUND, BIOCHEM CELL NUCLEUS LAB, LONDON WC2A 3PX, ENGLAND
LEVY, N
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LITTLEWOOD, TD
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IMPERIAL CANC RES FUND, BIOCHEM CELL NUCLEUS LAB, LONDON WC2A 3PX, ENGLANDIMPERIAL CANC RES FUND, BIOCHEM CELL NUCLEUS LAB, LONDON WC2A 3PX, ENGLAND
LITTLEWOOD, TD
;
EVAN, GI
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IMPERIAL CANC RES FUND, BIOCHEM CELL NUCLEUS LAB, LONDON WC2A 3PX, ENGLANDIMPERIAL CANC RES FUND, BIOCHEM CELL NUCLEUS LAB, LONDON WC2A 3PX, ENGLAND
EVAN, GI
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LAND, H
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IMPERIAL CANC RES FUND, BIOCHEM CELL NUCLEUS LAB, LONDON WC2A 3PX, ENGLANDIMPERIAL CANC RES FUND, BIOCHEM CELL NUCLEUS LAB, LONDON WC2A 3PX, ENGLAND