Javascript must be enabled to continue!
Charge neutralization of the active site glutamates does not limit substrate binding and transport by EmrE
View through CrossRef
Abstract
EmrE, a small multidrug resistance (SMR) transporter from
E. coli
, confers broad-spectrum resistance to polyaromatic cations and quaternary ammonium compounds. Previous transport assays demonstrate that EmrE transports a +1 and a +2 substrate with the same stoichiometry of 2 protons:1 cationic substrate. This suggests that EmrE substrate binding capacity is limited to neutralization of the two essential glutamates, E14
A
and E14
B
(one from each subunit in the antiparallel homodimer), in the primary binding site. Here we explicitly test this hypothesis, since EmrE has repeatedly broken expectations for membrane protein structure and transport mechanism. We previously showed that EmrE can bind a +1 cationic substrate and proton simultaneously, with cationic substrate strongly associated with one E14 residue while the other remains accessible to bind and transport a proton. Here we demonstrate that EmrE can bind a +2 cation substrate and a proton simultaneously using NMR pH titrations of EmrE saturated with divalent substrates, for a net +1 charge in the transport pore. Further, we find that EmrE can alternate access and transport a +2 substrate and proton at the same time. Together, these results lead us to conclude that E14 charge neutralization does not limit the binding and transport capacity of EmrE.
Title: Charge neutralization of the active site glutamates does not limit substrate binding and transport by EmrE
Description:
Abstract
EmrE, a small multidrug resistance (SMR) transporter from
E.
coli
, confers broad-spectrum resistance to polyaromatic cations and quaternary ammonium compounds.
Previous transport assays demonstrate that EmrE transports a +1 and a +2 substrate with the same stoichiometry of 2 protons:1 cationic substrate.
This suggests that EmrE substrate binding capacity is limited to neutralization of the two essential glutamates, E14
A
and E14
B
(one from each subunit in the antiparallel homodimer), in the primary binding site.
Here we explicitly test this hypothesis, since EmrE has repeatedly broken expectations for membrane protein structure and transport mechanism.
We previously showed that EmrE can bind a +1 cationic substrate and proton simultaneously, with cationic substrate strongly associated with one E14 residue while the other remains accessible to bind and transport a proton.
Here we demonstrate that EmrE can bind a +2 cation substrate and a proton simultaneously using NMR pH titrations of EmrE saturated with divalent substrates, for a net +1 charge in the transport pore.
Further, we find that EmrE can alternate access and transport a +2 substrate and proton at the same time.
Together, these results lead us to conclude that E14 charge neutralization does not limit the binding and transport capacity of EmrE.
Related Results
BİR HADİSİN YÛNUS EMRE DİLİNDEN ŞERHİ
BİR HADİSİN YÛNUS EMRE DİLİNDEN ŞERHİ
Yûnus Emre Anadolu’da tasavvufî din yorumunun önemli isimlerinden biridir. Ahmet Yesevî, Hacı Bayram Velî, Hacı Bektaş Velî, Mevlâna Celâleddîn Rûmî gibi birçok isimde olduğu gibi ...
Yunus Emre and the Yunus Emre Tomb in Ünye
Yunus Emre and the Yunus Emre Tomb in Ünye
Since the 11th century, there are saints called Sufis, Sheikhs, Saints, and Veli who came to Anatolia from Central Asia, Iran, Egypt, Iraq, Syria, Khorasan and Transoxiana and help...
7
th
International Symposium on Enabling Technologies for Life Sciences (ETP)
7
th
International Symposium on Enabling Technologies for Life Sciences (ETP)
The seventh in the series of ETP Symposia (see
Rapid Communications in Mass Spectrometry
2012,
26
, ...
Bimodal substrate binding in the active site of the glycosidase
B
c
X
Bimodal substrate binding in the active site of the glycosidase
B
c
X
Bacillus circulans
xylanase (BcX) from the glycoside hydrolase family 11 degrades xylan through a retaining, double‐displacement mechanism. The enzyme is though...
Sequence, structure, dynamics, and substrate specificity analyses of bacterial Glycoside Hydrolase 1 enzymes from several activities
Sequence, structure, dynamics, and substrate specificity analyses of bacterial Glycoside Hydrolase 1 enzymes from several activities
Glycoside hydrolase 1 (GH1) enzymes are a ubiquitous family of enzymes that hydrolyse the glycosidic bond between two or more carbohydrates, or between a carbohydrate and a non-car...
High-pH structure of EmrE reveals the mechanism of proton-coupled substrate transport
High-pH structure of EmrE reveals the mechanism of proton-coupled substrate transport
AbstractThe homo-dimeric bacterial membrane protein EmrE effluxes polyaromatic cationic substrates in a proton-coupled manner to cause multidrug resistance. We recently determined ...
Structural basis for polyglutamate chain initiation and elongation by TTLL family enzymes
Structural basis for polyglutamate chain initiation and elongation by TTLL family enzymes
Abstract
Glutamylation, introduced by TTLL enzymes, is the most abundant modification of brain tubulin. Essential effector proteins read the tubulin glutamylation p...
Droplet-resolved transport and charge neutralization in bipolar electrosprays
Droplet-resolved transport and charge neutralization in bipolar electrosprays
Abstract
Electrohydrodynamic atomization (EHDA) enables precise control of droplet size but inherently produces highly charged droplets, limiting its applicabilit...

