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Gonepudi, N. K.

Publications and source records attributed to Gonepudi, N. K..

3 recordsLinked to original sources

Peptide inhibitors recognize prefusion viral fusion proteins with heterogeneous stoichiometry and rapid kinetics

Peptide fusion inhibitors, an important class of antivirals, block viral entry by targeting fusion proteins required for membrane fusion. However, their interactions with intact trimeric fusion proteins remain elusive; direct observation of binding on virions or native-like trimers has been lacking. Here, we developed a single-molecule imaging platform to visualize peptide binding in real time. LP-98 bound HIV-1 Envelope (Env) trimers on virions and, unexpectedly, prefusion-stabilized soluble Env trimers, with higher affinity for virion-associated Env and, among soluble trimers, a mutant Env. RSV fusion-inhibiting T-118 and 4ca similarly engaged prefusion-stabilized fusion (F) trimers with rapid kinetics and high-nanomolar affinities. Binding to prefusion Env or F demonstrates that peptide inhibitors can act earlier than the canonical prehairpin-intermediate model suggests. Individual binding events revealed heterogeneous peptide-to-trimer stoichiometries, with single-peptide occupancy predominating, while stepwise and simultaneous events revealed multiple routes to higher occupancy. These findings expand the canonical model of peptide fusion inhibition and provide previously inaccessible mechanistic insights into how antiviral peptide fusion inhibitors act.

microbiology↗

Genomic Characterization and Therapeutic Potential of the Lytic Bacteriophage Curly against Klebsiella pneumoniae in Human Innate Immune Cells and a Murine Pneumonia Model

Klebsiella pneumoniae is an important cause of severe respiratory and systemic infections, and the increasing prevalence of multidrug-resistant strains has created an urgent need for alternative antibacterial strategies. In this study, nine K. pneumoniae-infecting bacteriophages isolated from diverse environmental sources were characterized genomically and functionally. Genome analyses revealed substantial genomic and proteomic diversity among the isolates. Functional screening against the clinical K. pneumoniae isolate JJD85 identified Curly as the most active phage, producing the highest plaque-forming titer and rapid suppression of bacterial growth in liquid culture. Curly was predicted to have a virulent lifestyle and encoded structural, genome-packaging, and DNA replication-associated proteins. In primary human monocyte-derived macrophage cultures, Curly markedly reduced bacterial burden in both cell-associated and cell-free fractions, while treatment of primary human neutrophil cultures produced an approximately 10^6-fold reduction in total recoverable bacterial burden. Transmission electron microscopy demonstrated phage-like particles within bacterial profiles located in both extracellular and macrophage-associated intracellular compartments. In a C57BL/6J murine pneumonia model, intranasal Curly treatment reduced pulmonary bacterial burden in a dose-associated manner, with approximately 10-fold and 100-fold reductions at the low and high doses, respectively. Curly treatment also attenuated infection-associated lung inflammation and preserved pulmonary architecture. These findings identify Curly as a promising bacteriophage candidate against K. pneumoniae and support further evaluation of its host range, resistance profile, and therapeutic potential.

microbiology↗

Distinct allosteric remodeling of HIV-1 Env dynamics on virions by gp41-directed antibodies reveals two modes of neutralization

HIV-1 envelope glycoprotein (Env), a gp120-gp41 trimer, undergoes coordinated conformational changes that drive membrane fusion and allow immune evasion by transiently concealing neutralization-sensitive epitopes. Most broadly neutralizing antibodies (bNAbs) target gp120, whereas a distinct subset recognizes conserved gp41 regions, such as the fusion peptide and the membrane-proximal external region; however, their impact on Env dynamics and associated neutralization mechanisms remains unclear. Using bioorthogonal tagging for single-molecule FRET, we monitored real-time bNAb-induced conformational sampling of Env on intact virions. Most gp41-directed bNAbs allosterically stabilized the prefusion-closed (PC) state, whereas the bivalent 10E8.4/iMab favored both PC and CD4-bound open (predominant) states. Antibodies redistributed the conformational populations of Env with modest kinetic effects, preserving the sequential transition pathway. These findings reveal two modes of neutralization for gp41-directed antibodies: fixing the prefusion-closed conformation and opening it, in both cases via long-range allosteric control of Env dynamics.

microbiology↗