Yonghui Chen
Kevin D. Reilly
Yongchang Chang
Evolutionarily Conserved Allosteric Network
in the
Cys Loop Family
of Ligand-gated Ion Channels
Revealed by Statistical Covariance Analysis.
J. Biol. Chem., 281 (26): 8184-8192 (June, 2006).
Abstract:
The Cys loop family of ligand-gated ion channels mediate fast synaptic
transmission for communication between neurons. They are allosteric
proteins, in which binding of a neurotransmitter to its binding site in
the extracellular amino-terminal domain triggers structural changes in
distant transmembrane domains to open a channel for ion flow. Although
the locations of binding site and channel gating machinery are well
defined, the structural basis of the activation pathway coupling
binding and channel opening remains to be determined. In this paper,
by analyzing amino acid covariance in a multiple sequence alignment, we
have identified an energetically interconnected network in the Cys loop
family of ligand-gated ion channels. Statistical coupling and correlated
mutational analyses along with clustering revealed a highly coupled
cluster. Mapping the positions in the cluster onto a three-dimensional
structural model demonstrated that these highly coupled positions form
an interconnected network linking experimentally identified binding
domains through the coupling region to the gating machinery. In
addition, these highly coupled positions are also condensed in the
transmembrane domains, which are a recent focus for the sites of action
of many allosteric modulators. Thus, our results revealed a genetically
interconnected network that potentially plays an important role in the
allosteric activation and modulation of the Cys loop family of ligand-
gated ion channels.