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Srinivasu, B. Y.

Publications and source records attributed to Srinivasu, B. Y..

2 recordsLinked to original sources

Functional self-nonamerization of the Type III translocase chaperone/exported protein receptor

Type III protein secretion is widespread in Gram-negative pathogens. It comprises the injectisome with a surface-exposed needle and an inner membrane translocase. The translocase contains the SctRSTU export channel enveloped by the export gate subunit SctV that binds chaperone/exported clients and forms a putative ante- chamber. We probed the assembly, function, structure and dynamics of SctV from enteropathogenic E.coli (EPEC). In both EPEC and E.coli lab strains, SctV forms peripheral oligomeric clusters that are detergent-extracted as homo-nonamers. Membrane-embedded SctV9 is necessary and sufficient to act as a receptor for different chaperone/exported protein pairs with distinct C-domain binding sites that are essential for secretion. Negative staining electron microscopy revealed that peptidisc-reconstituted His-SctV9 forms a tripartite particle of [~]22 nm with a N- terminal domain connected by a short linker to a C-domain ring structure with a [~]5 nm-wide inner opening. The isolated C-domain ring was resolved with cryo-EM at 3.1 [A] and structurally compared to other SctV homologues. Its four sub-domains undergo a three-stage "pinching" motion. Hydrogen-deuterium exchange mass spectrometry revealed this to involve dynamic and rigid hinges and a hyper-flexible sub-domain that flips out of the ring periphery and binds chaperones on and between adjacent protomers. These motions are coincident with pore surface and ring entry mouth local conformational changes that are also modulated by the ATPase inner stalk. We propose a model that the intrinsic dynamics of the SctV protomer are modulated by chaperones and the ATPase and could affect allosterically the other subunits of the nonameric ring during secretion.

molecular biology

PyHDX: Derivation and visualization of protection factors from Hydrogen-Deuterium Exchange Mass Spectrometry at near residue resolution

Hydrogen Deuterium Exchange Mass Spectrometry is a powerful monitor of protein intrinsic dynamics, yet the interpretation, visualization and cross-comparison of HDX-MS datasets is challenging. Here we present PyHDX, an open-source python package and web server, that batch-extracts the universal quantity Gibbs free energy at residue level over multiple protein conditions and homologues. {Delta}G values relate to protein normal modes and together provide a universal measure of protein flexibility. AvailabilityPyHDX source code is released under the MIT license and can be accessed on GitHub.

bioinformatics