Publications by authors named "N Banavali"

The global epidemic of drug-resistant continues unabated. The initial report on pan-drug resistant (PDR) strains in a hospitalized patient in New York was unprecedented. PDR showed both known and unique mutations in the prominent gene targets of azoles, amphotericin B, echinocandins, and flucytosine.

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The global epidemic of drug-resistant continues unabated. We do not know what caused the unprecedented appearance of pan-drug resistant (PDR) strains in a hospitalized patient in New York; the initial report highlighted both known and unique mutations in the prominent gene targets of azoles, amphotericin B, echinocandins, and flucytosine antifungal drugs. However, the factors that allow to acquire multi-drug resistance and pan-drug resistance are not known.

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HflX is known to rescue stalled ribosomes and is implicated in antibiotic resistance in several bacteria. Here we present several high-resolution cryo-EM structures of mycobacterial HflX in complex with the ribosome and its 50S subunit, with and without antibiotics. These structures reveal a distinct mechanism for HflX-mediated ribosome splitting and antibiotic resistance in mycobacteria.

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Importance: Trichophyton indotineae is an emerging dermatophyte causing outbreaks of extensive tinea infections often unresponsive to terbinafine. This species has been detected worldwide and in multiple US states, yet detailed US data on infections with T indotineae are sparse and could improve treatment practices and medical understanding of transmission.

Objective: To correlate clinical features of T indotineae infections with in vitro antifungal susceptibility testing results, squalene epoxidase gene sequence variations, and isolate relatedness using whole-genome sequencing.

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Article Synopsis
  • Borrelia burgdorferi (Bbu), which causes Lyme disease, affects over 10% of the global population and leads to around 500,000 infections annually in the US.
  • Researchers revealed the structure of the Bbu 70S ribosome using advanced cryo-electron microscopy, identifying new ribosomal proteins and suggesting evolutionary links to other species.
  • Findings about the Bbu ribosome could improve the design of antibiotics targeting it, potentially enhancing treatments for Lyme disease.
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