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Arthanari, H.

Publications and source records attributed to Arthanari, H..

3 recordsLinked to original sources

Interactome and structural basis for targeting the human T-cell leukemia virus Tax oncoprotein

Human T-cell leukemia virus type-1 (HTLV-1) is the causative agent of adult T-cell leukemia (ATL). Although ATL is a well-characterized T-cell neoplasm, linked to intermittent expression of the viral Tax-1 protein, there is currently no strategy to target Tax-1 functions using small molecules. Here, we report a comprehensive interaction map between Tax-1 and human PDZ domain-containing proteins (hPDZome). We show that Tax-1 interacts with more than one-third of hPDZome components, including proteins involved in cell cycle, cell-cell junctions, cytoskeleton organization, and membrane complex assembly. Using nuclear magnetic resonance (NMR) spectroscopy, we have determined the structural basis of the interaction between the C-terminal PDZ binding motif (PBM) of Tax-1, and the PDZ domains of syntenin-1, an evolutionary conserved hub that controls exosome trafficking. Finally, we have used confocal imaging, molecular modelling, NMR and mammalian cell-based assays to demonstrate that the Tax-1/syntenin-1 interaction is amenable to small-molecule inhibition. Altogether, our study highlights the biological significance of Tax-PDZ interactome and its interplay with exosome formation. It shows a direct link between extracellular vesicles and HTLV-1 transmission, providing a novel framework for the design of targeted therapies for HTLV-1-induced diseases.

biochemistry

A slow-exchange conformational switch regulates off-target cleavage by high-fidelity Cas9

The Cas9 endonuclease is broadly used for genome engineering applications by programming its single-guide RNA, where high specificity is required. Although mechanistic understanding of DNA cleavage in the CRISPR-Cas9 system has been guided by crystallographic structures and single-molecule FRET experiments, the role of conformational plasticity within its DNA recognition lobe (REC) for target accuracy remains elusive. Through NMR analysis of milliseconds-timescale dynamics, we show that the REC3 domain exchanges between a major, closed and a minor, open conformation. We find that a single mutation in the HiFi Cas9 variant (R691A) increases conformational dynamics in REC3, eliciting a global transition to the open conformation which is regulated by an intramolecular salt-bridge network. These observations suggest a mechanism for reduced off-target recognition by switching on a global conformational exchange process to allow REC3 scanning for proper base pairing. Our data establish a framework for rational engineering Cas9 variants with improved target discrimination.

biochemistry

Identification of low micromolar SARS-CoV-2 Mpro inhibitors from hits identified by in silico screens

Mpro, also known as 3CLpro, is the main protease of the SARS-CoV-2 coronavirus and, as such, is essential for the viral life cycle. Two studies have each screened and ranked in silico more than one billion chemical compounds in an effort to identify putative inhibitors of Mpro. More than five hundred of the seven thousand top-ranking hits were synthesized by an external supplier and examined with respect to their activity in two biochemical assays: a protease activity assay and a thermal shift assay. Two clusters of chemical compounds with Mpro inhibitory activity were identified. An additional five hundred molecules, analogues of the compounds in the two clusters described above, were also synthesized and characterized in vitro. The study of the analogues revealed that the compounds of the first cluster acted by denaturing Mpro and might denature other proteins as well. In contrast, the compounds of the second cluster targeted Mpro with much greater specificity and enhanced its melting temperature, consistent with the formation of stable Mpro-inhibitor complexes. The most active compounds of the second cluster exhibited IC50 values between 4 and 7 M and their chemical structure suggests that they could serve as leads for the development of potent Mpro inhibitors.

biochemistry