Engineering a Metal Binding Site within a Polytopic Membrane Protein, the Lactose Permease of Escherichia coli

Autor(en): Jung, K.
Molly, H.
Kaback, H.R.
Voss, J.
Hubbell, W.L.
Stichwörter: Glutamates; Histidine, 71-00-1; lactose permease, 9068-45-5; Manganese, 7439-96-5; Membrane Transport Proteins; Metals; avidin; lactose permease; manganese, affinity chromatography; amino acid substitution; article; controlled study; electron spin resonance; enzyme binding; escherichia coli; nonhuman; priority journal; protein tertiary structure; site directed mutagenesis; stoichiometry; structure activity relation, Binding Sites; Electron Spin Resonance Spectroscopy; Escherichia coli; Glutamates; Histidine; Hydrogen-Ion Concentration; Manganese; Membrane Transport Proteins; Metals; Models, Molecular; Protein Engineering; Protein Structure, Secondary; Support, Non-U.S. Gov't; Support, U.S. Gov't, P.H.S., Escherichia coli
Erscheinungsdatum: 1995
Journal: Biochemistry
Volumen: 34
Ausgabe: 19
Startseite: 6272
Seitenende: 6277
Zusammenfassung: 
Site-directed excimer fluorescence indicates that Glu269 (helix VIII) and His322 (helix X) in the lactose permease of Escherichia coli lie in close proximity [Jung, K., Jung, H., Wu, J., Privé, G. G., & Kaback, H. R. (1993) Biochemistry 32, 12273]. In this study, Glu269 was replaced with His in wildtype permease, leading to the presence of bis-His residues between helices VIII and X. Wild-type and Glu269→His permease containing a biotin acceptor domain were purified by monomeric avidin affinity chromatography, and binding of Mn2+ was studied by electron paramagnetic resonance (EPR) spectroscopy. The amplitude of the Mn2+ EPR spectrum is reduced by the Glu269→ His mutant, while no change is observed in the presence of wild-type permease. The Glu269→His mutant contains a single binding site for Mn2+ with a Kn of about 43 µM, and Mn2+ binding is pH dependent with no binding at pH 5.0, stoichiometric binding at pH 7.5, and a midpoint at about pH 6.3. The results confirm the conclusion that helices VIII and X are closely opposed in the tertiary structure of lac permease and provide a novel approach for studying helix proximity, as well as solvent accessibility, in polytopic membrane proteins. © 1995, American Chemical Society. All rights reserved.
ISSN: 00062960
DOI: 10.1021/bi00019a003
Externe URL: https://www.scopus.com/inward/record.uri?eid=2-s2.0-0029041299&doi=10.1021%2fbi00019a003&partnerID=40&md5=dbec2b1744d9b95befab9ba62c7ef8ce

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