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result(s) for
"RNA Virus Infections"
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Role of Host-Mediated Post-Translational Modifications (PTMs) in RNA Virus Pathogenesis
by
Mehta, Divya
,
Sunil, Sujatha
,
Kumar, Ramesh
in
Acetylation
,
Chikungunya virus - metabolism
,
Coronavirus - metabolism
2020
Being opportunistic intracellular pathogens, viruses are dependent on the host for their replication. They hijack host cellular machinery for their replication and survival by targeting crucial cellular physiological pathways, including transcription, translation, immune pathways, and apoptosis. Immediately after translation, the host and viral proteins undergo a process called post-translational modification (PTM). PTMs of proteins involves the attachment of small proteins, carbohydrates/lipids, or chemical groups to the proteins and are crucial for the proteins’ functioning. During viral infection, host proteins utilize PTMs to control the virus replication, using strategies like activating immune response pathways, inhibiting viral protein synthesis, and ultimately eliminating the virus from the host. PTM of viral proteins increases solubility, enhances antigenicity and virulence properties. However, RNA viruses are devoid of enzymes capable of introducing PTMs to their proteins. Hence, they utilize the host PTM machinery to promote their survival. Proteins from viruses belonging to the family: Togaviridae, Flaviviridae, Retroviridae, and Coronaviridae such as chikungunya, dengue, zika, HIV, and coronavirus are a few that are well-known to be modified. This review discusses various host and virus-mediated PTMs that play a role in the outcome during the infection.
Journal Article
Influenza A virus targets a cGAS-independent STING pathway that controls enveloped RNA viruses
by
Jensen, Simon K.
,
Thomsen, Martin K.
,
Xiong, Yingluo
in
631/250/1933
,
631/250/262
,
631/326/596/1578
2016
Stimulator of interferon genes (STING) is known be involved in control of DNA viruses but has an unexplored role in control of RNA viruses. During infection with DNA viruses STING is activated downstream of cGAMP synthase (cGAS) to induce type I interferon. Here we identify a STING-dependent, cGAS-independent pathway important for full interferon production and antiviral control of enveloped RNA viruses, including influenza A virus (IAV). Further, IAV interacts with STING through its conserved hemagglutinin fusion peptide (FP). Interestingly, FP antagonizes interferon production induced by membrane fusion or IAV but not by cGAMP or DNA. Similar to the enveloped RNA viruses, membrane fusion stimulates interferon production in a STING-dependent but cGAS-independent manner. Abolishment of this pathway led to reduced interferon production and impaired control of enveloped RNA viruses. Thus, enveloped RNA viruses stimulate a cGAS-independent STING pathway, which is targeted by IAV.
Stimulator of interferon genes (STING) is known to be involved in defence against DNA viruses, but its role in the control of RNA viruses remains poorly explored. Here the authors show that STING participates in an innate immune response to RNA virus infection in a cGAS-independent manner.
Journal Article
Nonhuman primate models of human viral infections
by
Estes, Jacob D
,
Wong, Scott W
,
Brenchley, Jason M
in
Animal models
,
Immune response
,
Infections
2018
Humans have a close phylogenetic relationship with nonhuman primates (NHPs) and share many physiological parallels, such as highly similar immune systems, with them. Importantly, NHPs can be infected with many human or related simian viruses. In many cases, viruses replicate in the same cell types as in humans, and infections are often associated with the same pathologies. In addition, many reagents that are used to study the human immune response cross-react with NHP molecules. As such, NHPs are often used as models to study viral vaccine efficacy and antiviral therapeutic safety and efficacy and to understand aspects of viral pathogenesis. With several emerging viral infections becoming epidemic, NHPs are proving to be a very beneficial benchmark for investigating human viral infections.
Journal Article
Just Doctoring
2022,2024
Just Doctoring draws the doctor-patient relationship out of the consulting room and into the middle of the legal and political arenas where it more and more frequently appears. Traditionally, medical ethics has focused on the isolated relationship of physician to patient in a setting that has left the physician virtually untouched by market constraints or government regulation. Arguing that changes in health care institutions and legal attention to patient rights have made conventional approaches obsolete, Troyen Brennan points the way to a new, more aware and engaged medical ethics. The medical profession is no longer isolated, even theoretically, from the liberal, market-dominated state. Old ideas of physician beneficence and altruism must make way for a justice-based medical ethics, assuming a relationship between equals more compatible with liberal political philosophy. Brennan offers clinical examples of many of today's most challenging medical problems--from informed consent to care rationing and the repercussions of the HIV epidemic--and gives his recommendation for a new ethical perspective. This lively and controversial plea for a rethinking of medical ethics goes right to the heart of medical care at the end of the twentieth century. This title is part of UC Press's Voices Revived program, which commemorates University of California Press's mission to seek out and cultivate the brightest minds and give them voice, reach, and impact. Drawing on a backlist dating to 1893, Voices Revived makes high-quality, peer-reviewed scholarship accessible once again using print-on-demand technology. This title was originally published in 1991. Many titles in the Voices Revived program are also newly available as ebooks, offered at a discounted price to support wider access to scholarly work.
Recognition of RNA virus by RIG-I results in activation of CARD9 and inflammasome signaling for interleukin 1β production
by
Inoue, Satoshi
,
Schlee, Martin
,
Finger, Katrin
in
Adaptor Proteins, Signal Transducing - genetics
,
Adaptor Proteins, Signal Transducing - metabolism
,
Animals
2010
Production of mature interleukin 1β (IL-1β) requires
Il1b
transcription and inflammasome-mediated processing of IL-1β protein. Ruland and colleagues show that the RNA virus sensor RIG-I signals via the adaptors CARD9 and Asc to facilitate both processes.
Interleukin 1β (IL-1β) is a potent proinflammatory factor during viral infection. Its production is tightly controlled by transcription of
Il1b
dependent on the transcription factor NF-κB and subsequent processing of pro-IL-1β by an inflammasome. However, the sensors and mechanisms that facilitate RNA virus–induced production of IL-1β are not well defined. Here we report a dual role for the RNA helicase RIG-I in RNA virus–induced proinflammatory responses. Whereas RIG-I-mediated activation of NF-κB required the signaling adaptor MAVS and a complex of the adaptors CARD9 and Bcl-10, RIG-I also bound to the adaptor ASC to trigger caspase-1-dependent inflammasome activation by a mechanism independent of MAVS, CARD9 and the Nod-like receptor protein NLRP3. Our results identify the CARD9–Bcl-10 module as an essential component of the RIG-I-dependent proinflammatory response and establish RIG-I as a sensor able to activate the inflammasome in response to certain RNA viruses.
Journal Article
Natural Alkaloids as Antiviral Agents Against RNA Viruses: A Comprehensive and Mechanistic Review
by
Vandeberg, Elyn
,
Garigliany, Mutien-Marie
,
Ledoux, Allison
in
Alkaloids
,
Alkaloids - chemistry
,
Alkaloids - pharmacology
2026
RNA viruses pose a persistent global threat due to their high mutation rates, zoonotic potential, and rapid adaptability. Emergence events have risen steadily, as demonstrated by major outbreaks caused by Influenza A, Ebola, Zika, and Chikungunya viruses, followed by the coronavirus epidemics of Severe Acute Respiratory Syndrome coronavirus (SARS-CoV-1) and Middle East Respiratory Syndrome Coronavirus (MERS-CoV) and culminating in the COVID-19 pandemic. These characteristics frequently compromise the durability of existing vaccines and antiviral therapies, highlighting the urgent need for new antiviral agents. Alkaloids, a structurally diverse class of nitrogen-containing natural compounds, have gained attention for their ability to interfere with multiple stages of the viral life cycle, including entry, replication, protein synthesis, and host immune modulation. To our knowledge, this review compiles all currently reported alkaloids with antiviral activity against RNA viruses and summarizes their proposed mechanisms of action, distinguishing evidence from in vitro, in vivo, and in silico studies. Quaternary alkaloids are discussed separately because their permanent ionic charge enables distinctive interactions with membranes and host pathways. Although many findings are promising, clinical translation remains limited by incomplete mechanistic validation, scarce in vivo data, suboptimal bioavailability, narrow therapeutic windows, and inconsistent experimental methodologies. To advance the field, future research should prioritize RT-qPCR–based antiviral evaluation to accurately quantify viral replication, incorporate mechanistic assays to clarify modes of action, apply structure–activity relationship (SAR) approaches for rational optimization, and expand in vivo pharmacokinetic and efficacy studies to assess therapeutic feasibility. Overall, alkaloids represent a promising yet underdeveloped reservoir for next-generation antiviral discovery against rapidly evolving RNA viruses.
Journal Article
Recent Progress on Exosomes in RNA Virus Infection
2021
Recent research indicates that most tissue and cell types can secrete and release membrane-enclosed small vesicles, known as exosomes, whose content reflects the physiological/pathological state of the cells from which they originate. These exosomes participate in the communication and cell-to-cell transfer of biologically active proteins, lipids, and nucleic acids. Studies of RNA viruses have demonstrated that exosomes release regulatory factors from infected cells and deliver other functional host genetic elements to neighboring cells, and these functions are involved in the infection process and modulate the cellular responses. This review provides an overview of the biogenesis, composition, and some of the most striking functions of exosome secretion and identifies physiological/pathological areas in need of further research. While initial indications suggest that exosome-mediated pathways operate in vivo, the exosome mechanisms involved in the related effects still need to be clarified. The current review focuses on the role of exosomes in RNA virus infections, with an emphasis on the potential contributions of exosomes to pathogenesis.
Journal Article
Dual RNA-seq reveals viral infections in asthmatic children without respiratory illness which are associated with changes in the airway transcriptome
by
Fingerlin, Tasha E.
,
Rodriguez-Santana, Jose
,
Wesolowska-Andersen, Agata
in
Airway epithelium
,
Animal Genetics and Genomics
,
Asthma
2017
Background
Respiratory illness caused by viral infection is associated with the development and exacerbation of childhood asthma. Little is known about the effects of respiratory viral infections in the absence of illness. Using quantitative PCR (qPCR) for common respiratory viruses and for two genes known to be highly upregulated in viral infections (
CCL8
/
CXCL11
), we screened 92 asthmatic and 69 healthy children without illness for respiratory virus infections.
Results
We found 21 viral qPCR-positive and 2 suspected virus-infected subjects with high expression of
CCL8/CXCL11
. We applied a dual RNA-seq workflow to these subjects, together with 25 viral qPCR-negative subjects, to compare qPCR with sequencing-based virus detection and to generate the airway transcriptome for analysis. RNA-seq virus detection achieved 86% sensitivity when compared to qPCR-based screening. We detected additional respiratory viruses in the two
CCL8/CXCL11
-high subjects and in two of the qPCR-negative subjects. Viral read counts varied widely and were used to stratify subjects into Virus-High and Virus-Low groups. Examination of the host airway transcriptome found that the Virus-High group was characterized by immune cell airway infiltration, downregulation of cilia genes, and dampening of type 2 inflammation. Even the Virus-Low group was differentiated from the No-Virus group by 100 genes, some involved in eIF2 signaling.
Conclusions
Respiratory virus infection without illness is not innocuous but may determine the airway function of these subjects by driving immune cell airway infiltration, cellular remodeling, and alteration of asthmogenic gene expression.
Journal Article
Trichomonas vaginalis Virus Among Women With Trichomoniasis and Associations With Demographics, Clinical Outcomes, and Metronidazole Resistance
by
Graves, Keonte J.
,
Augostini, Peter
,
Muzny, Christina A.
in
and Commentaries
,
ARTICLES AND COMMENTARIES
2019
Abstract
Background
Trichomonas vaginalis virus (TVV) is a non-segmented, 4.5–5.5 kilo-base pair (kbp), double-stranded RNA virus infecting T. vaginalis. The objectives of this study were to examine the TVV prevalence in US Trichomonas vaginalis isolates and TVV’s associations with patient demographics, clinical outcomes, and metronidazole resistance.
Methods
Archived T. vaginalis isolates from the enrollment visits of 355 women participating in a T. vaginalis treatment trial in Birmingham, Alabama, were thawed and grown in culture. Their total RNA was extracted using a Trizol reagent. Contaminating, single-stranded RNA was precipitated using 4.0 M Lithium Chloride and centrifugation. The samples were analyzed by gel electrophoresis to visualize a 4.5 kbp band representative of TVV. In vitro testing for metronidazole resistance was also performed on 25/47 isolates obtained from the women’s test of cure visits.
Results
TVV was detected in 142/355 (40%) isolates at the enrollment visit. Women with TVV-positive (TVV+) isolates were significantly older (P = .01), more likely to smoke (P = .04), and less likely to report a history of gonorrhea (P = .04). There was no association between the presence of clinical symptoms or repeat T. vaginalis infections with TVV+ isolates (P = .14 and P = .44, respectively). Of 25 test of cure isolates tested for metronidazole resistance, 0/10 TVV+ isolates demonstrated resistance, while 2/15 TVV-negative isolates demonstrated mild to moderate resistance (P = .23).
Conclusions
Of 355 T. vaginalis isolates tested for TVV, T. vaginalis isolates tested for TVV, the prevalence was 40%. However, there was no association of TVV+ isolates with clinical symptoms, repeat infections, or metronidazole resistance. These results suggest that TVV may be commensal to T. vaginalis.
Among women with trichomoniasis, Trichomonas vaginalis virus (TVV) infected 142/355 (40%) of T. vaginalis isolates and was independently associated with older age and smoking. Women reporting a history of gonorrhea were less likely to be infected. Metronidazole drug resistance was not associated with TVV.
Journal Article
NK cell development, homeostasis and function: parallels with CD8+ T cells
2011
Key Points
Natural killer (NK) cell development in the bone marrow consists of an education process that involves inhibitory receptor engagement with MHC class I molecules, in a similar manner to thymic selection dictated by T cell receptor (TCR)–MHC interactions.
NK cell lineage specification depends on intrinsic programming by transcription factors such as ID2 and E4BP4.
After exiting the bone marrow, NK cells undergo a progressive phenotypic and functional maturation. Peripheral NK cell homeostasis and survival require IL-15.
In a lymphopenic environment, NK cells rapidly undergo homeostatic proliferation in order to fill the NK cell niche. This expansion results in the generation of long-lived NK cells capable of robust effector responses.
During certain viral infections in mice and humans, NK cells are activated, undergo prolific clonal expansion and become long-lived memory cells capable of increased responsiveness; this response closely resembles the CD8
+
T cell response against pathogens.
Natural killer (NK) cells are traditionally considered to be innate immune players. In this Review, J. C. Sun and L. L. Lanier summarize the principles of NK cell development, homeostasis and function, and draw parallels between NK cell and CD8
+
T cell biology. From a fascinating discussion it appears that the borders between innate and adaptive immunity are not as well defined as previously thought.
Natural killer (NK) cells survey host tissues for signs of infection, transformation or stress and, true to their name, kill target cells that have become useless or are detrimental to the host. For decades, NK cells have been classified as a component of the innate immune system. However, accumulating evidence in mice and humans suggests that, like the B and T cells of the adaptive immune system, NK cells are educated during development, possess antigen-specific receptors, undergo clonal expansion during infection and generate long-lived memory cells. In this Review, we highlight the many stages that an NK cell progresses through during its remarkable lifetime, discussing similarities and differences with its close relative, the cytotoxic CD8
+
T cell.
Journal Article