Publications by authors named "Lasso G"

Evidence suggests that bats are important hosts of filoviruses, yet the specific species involved remain largely unidentified. Niemann-Pick C1 (NPC1) is an essential entry receptor, with amino acid variations influencing viral susceptibility and species-specific tropism. Herein, we conducted combinatorial binding studies with seven filovirus glycoproteins (GPs) and NPC1 orthologs from 81 bat species.

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  • Understanding bat coronaviruses (CoVs) is vital for preventing future pandemics, so researchers created modified viruses to study how these bat CoVs enter cells.
  • They discovered a surprising change in a specific region of the virus that improved its ability to bind to a human receptor, enhancing its entry into cells.
  • The study reveals how bat CoVs might adapt to jump between species and suggests strategies to target vulnerabilities in these viruses for potential prevention measures.
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  • Monkeypox virus (MPXV) is causing a global outbreak, raising questions about different antibody responses from vaccination versus actual infection.
  • A study found that convalescent individuals (those who recovered from MPXV) had higher neutralizing antibodies against the virus compared to vaccinated and non-infected people one month after exposure.
  • Both groups experienced a significant decrease in antibody levels after eight months, indicating a need for improved vaccine strategies to ensure longer-lasting immunity and reduce breakthrough infections.
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Understanding the zoonotic risks posed by bat coronaviruses (CoVs) is critical for pandemic preparedness. Herein, we generated recombinant vesicular stomatitis viruses (rVSVs) bearing spikes from divergent bat CoVs to investigate their cell entry mechanisms. Unexpectedly, the successful recovery of rVSVs bearing the spike from SHC014, a SARS-like bat CoV, was associated with the acquisition of a novel substitution in the S2 fusion peptide-proximal region (FPPR).

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  • Scientists are studying two viruses, Andes virus (ANDV) and Sin Nombre virus (SNV), which can cause serious illness in people but don't have any approved treatments yet.
  • They found that a protein called Protocadherin-1 (PCDH1) is important for these viruses to enter human cells, meaning it could be a target for new medicines.
  • By changing one tiny part of this protein, researchers were able to protect hamsters from getting sick, suggesting that modifying PCDH1 might help create ways to fight these viruses.
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The clinical outcome of SARS-CoV-2 infection varies widely between individuals. Machine learning models can support decision making in healthcare by assessing fatality risk in patients that do not yet show severe signs of COVID-19. Most predictive models rely on static demographic features and clinical values obtained upon hospitalization.

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The resurgence of yellow fever in South America has prompted vaccination against the etiologic agent, yellow fever virus (YFV). Current vaccines are based on a live-attenuated YF-17D virus derived from a virulent African isolate. The capacity of these vaccines to induce neutralizing antibodies against the vaccine strain is used as a surrogate for protection.

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Importance: There is clinical equipoise for COVID-19 convalescent plasma (CCP) use in patients hospitalized with COVID-19.

Objective: To determine the safety and efficacy of CCP compared with placebo in hospitalized patients with COVID-19 receiving noninvasive supplemental oxygen.

Design, Setting, And Participants: CONTAIN COVID-19, a randomized, double-blind, placebo-controlled trial of CCP in hospitalized adults with COVID-19, was conducted at 21 US hospitals from April 17, 2020, to March 15, 2021.

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Most known SARS-CoV-2 neutralizing antibodies (nAbs), including those approved by the FDA for emergency use, inhibit viral infection by targeting the receptor-binding domain (RBD) of the spike (S) protein. Variants of concern (VOC) carrying mutations in the RBD or other regions of S reduce the effectiveness of many nAbs and vaccines by evading neutralization. Therefore, therapies that are less susceptible to resistance are urgently needed.

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The coronavirus disease 2019 (COVID-19) global pandemic caused by severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) continues to place an immense burden on societies and health care systems. A key component of COVID-19 control efforts is serological testing to determine the community prevalence of SARS-CoV-2 exposure and quantify individual immune responses to prior SARS-CoV-2 infection or vaccination. Here, we describe a laboratory-developed antibody test that uses readily available research-grade reagents to detect SARS-CoV-2 exposure in patient blood samples with high sensitivity and specificity.

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Severe acute respiratory syndrome coronavirus 1 (SARS-CoV-1) and SARS-CoV-2 are not phylogenetically closely related; however, both use the angiotensin-converting enzyme 2 (ACE2) receptor in humans for cell entry. This is not a universal sarbecovirus trait; for example, many known sarbecoviruses related to SARS-CoV-1 have two deletions in the receptor binding domain of the spike protein that render them incapable of using human ACE2. Here, we report three sequences of a novel sarbecovirus from Rwanda and Uganda that are phylogenetically intermediate to SARS-CoV-1 and SARS-CoV-2 and demonstrate via in vitro studies that they are also unable to utilize human ACE2.

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  • SARS-CoV-2 is a new virus causing COVID-19, part of the Coronaviridae family with studied biology.
  • Recently developed bioinformatics tools aim for quick detection and analysis of the virus to aid in controlling the pandemic.
  • The review details various bioinformatics tools for routine infection detection, sequencing data analysis, tracking COVID-19, studying virus evolution, and finding drug targets, all accessible for free online.
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Viruses deploy genetically encoded strategies to coopt host machinery and support viral replicative cycles. Here, we use protein structure similarity to scan for molecular mimicry, manifested by structural similarity between viral and endogenous host proteins, across thousands of cataloged viruses and hosts spanning broad ecological niches and taxonomic range, including bacteria, plants and fungi, invertebrates, and vertebrates. This survey identified over 6,000,000 instances of structural mimicry; more than 70% of viral mimics cannot be discerned through protein sequence alone.

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Article Synopsis
  • The COVID-19 pandemic, caused by SARS-CoV-2, exerts significant pressure on global healthcare systems, making serologic testing crucial for understanding community exposure and immune response.
  • * A new laboratory-developed antibody test has been introduced that uses common research-grade materials to effectively detect past SARS-CoV-2 exposure in blood samples, demonstrating high sensitivity and specificity.
  • * This test can also measure specific IgG titers from a single sample, making it a practical and cost-efficient tool for evaluating individual immune responses in the context of the ongoing pandemic.
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  • - There is a critical demand for vaccines and treatments to combat COVID-19, which relies on effective testing methods to assess immune responses and identify promising antiviral candidates.
  • - Researchers have created a new virus strain called rVSV-SARS-CoV-2 S that mimics the entry characteristics of SARS-CoV-2, allowing for better assessment of immune responses against it.
  • - The study demonstrates that this recombinant virus can be used in high-throughput assays to evaluate neutralizing antibodies from recovered COVID-19 patients, paving the way for targeted therapies and deeper understanding of how the virus enters cells.
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SARS-CoV-1 and SARS-CoV-2 are not phylogenetically closely related; however, both use the ACE2 receptor in humans for cell entry. This is not a universal sarbecovirus trait; for example, many known sarbecoviruses related to SARS-CoV-1 have two deletions in the receptor binding domain of the spike protein that render them incapable of using human ACE2. Here, we report three sequences of a novel sarbecovirus from Rwanda and Uganda which are phylogenetically intermediate to SARS-CoV-1 and SARS-CoV-2 and demonstrate via in vitro studies that they are also unable to utilize human ACE2.

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Ebola virus (EBOV) entry into cells is mediated by its spike glycoprotein (GP). Following attachment and internalization, virions traffic to late endosomes where GP is cleaved by host cysteine proteases. Cleaved GP then binds its cellular receptor, Niemann-Pick C1.

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  • There is a critical need for effective vaccines and treatments for COVID-19, which relies on developing reliable viral assays to evaluate immune responses and select antiviral candidates.
  • The study introduces a recombinant vesicular stomatitis virus (rVSV) that incorporates the SARS-CoV-2 spike protein, mimicking the virus's entry behavior for research purposes.
  • The findings demonstrate that this rVSV can effectively assess the neutralizing antibodies in COVID-19 recovered patients, indicating its potential for developing targeted vaccines and therapies.
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While knowledge of protein-protein interactions (PPIs) is critical for understanding virus-host relationships, limitations on the scalability of high-throughput methods have hampered their identification beyond a number of well-studied viruses. Here, we implement an in silico computational framework (pathogen host interactome prediction using structure similarity [P-HIPSTer]) that employs structural information to predict ∼282,000 pan viral-human PPIs with an experimental validation rate of ∼76%. In addition to rediscovering known biology, P-HIPSTer has yielded a series of new findings: the discovery of shared and unique machinery employed across human-infecting viruses, a likely role for ZIKV-ESR1 interactions in modulating viral replication, the identification of PPIs that discriminate between human papilloma viruses (HPVs) with high and low oncogenic potential, and a structure-enabled history of evolutionary selective pressure imposed on the human proteome.

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In the version of this Article originally published, the bat species for 12 individuals were incorrectly identified in Supplementary Table 1 and 2. After resequencing the MT-CytB and MT-CO1 segments and reviewing the data, the authors have corrected the errors for these 12 animals. In the amended version of the Supplementary Information, Supplementary Tables 1 and 2 have been replaced to include the corrected host species information.

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Here we describe the complete genome of a new ebolavirus, Bombali virus (BOMV) detected in free-tailed bats in Sierra Leone (little free-tailed (Chaerephon pumilus) and Angolan free-tailed (Mops condylurus)). The bats were found roosting inside houses, indicating the potential for human transmission. We show that the viral glycoprotein can mediate entry into human cells.

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Conjugative transfer of plasmid R388 requires the coupling protein TrwB for protein and DNA transport, but their molecular role in transport has not been deciphered. We investigated the role of residues protruding into the central channel of the TrwB hexamer by a mutational analysis. Mutations affecting lysine residues K275, K398, and K421, and residue S441, all facing the internal channel, affected transport of both DNA and the relaxase protein in vivo.

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Comprehensive delineation of complex cellular networks requires high-throughput interrogation of genetic interactions. To address this challenge, we describe the development of a multiplex combinatorial strategy to assess pairwise genetic interactions using CRISPR-Cas9 genome editing and next-generation sequencing. We characterize the performance of combinatorial genome editing and analysis using different promoter and gRNA designs and identified regions of the chimeric RNA that are compatible with next-generation sequencing preparation and quantification.

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