pK<sub>a</sub> of Glu325 in LacY.
basic_science · Level V
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- Record sourced from PubMed, PMID 28154138.
- Also identified by DOI 10.1073/pnas.1621431114 and PMC identifier 5320973.
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Abstract
Lactose permease (LacY), a paradigm for the largest family of membrane transport proteins, catalyzes the coupled translocation of a galactoside and a H<sup>+</sup> across the cytoplasmic membrane of <i>Escherichia coli</i> (galactoside/H<sup>+</sup> symport). One of the most important aspects of the mechanism is the relationship between protonation and binding of the cargo galactopyranoside. In this regard, it has been shown that protonation is required for binding. Furthermore when galactoside affinity is measured as a function of pH, an apparent pK (pK<sup>app</sup>) of ∼10.5 is obtained. Strikingly, when Glu325, a residue long known to be involved in coupling between H<sup>+</sup> and sugar translocation, is replaced with a neutral side chain, the pH effect is abolished, and high-affinity binding is observed until LacY is destabilized at alkaline pH. In this paper, infrared spectroscopy is used to identify Glu325 in situ. Moreover, it is demonstrated that this residue exhibits a pK<sub>a</sub> of 10.5 ± 0.1 that is insensitive to the presence of galactopyranoside. Thus, it is apparent that protonation of Glu325 specifically is required for effective sugar binding to LacY.
Medical subject headings
- Escherichia coli Proteins
- Monosaccharide Transport Proteins
- Symporters