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Influenza virus hacks cell's internal system

Researchers at the University of Gothenburg discovered that the influenza A virus exploits a protein called AGO2 to regulate gene activity and weaken the immune system. An existing drug, arsenic trioxide, showed promise in increasing interferon production and reducing viral loads.

SourceUniversity of Gothenburg·JournalNucleic Acids Research·TypeExperimental study·DateApr 28, 2025

Gene therapy reverses symptoms of rare neurological disease in animal models

A recent study demonstrates gene therapy's potential to restore motor capacity in an ultra-rare disease, Megalencephalic Leukoencephalopathy with Subcortical Cysts (MLC), even after symptom onset. The treatment restored normal protein activity, normalizing physiological brain alterations and reversing motor impairments in treated mice.

SourceUniversitat Autonoma de Barcelona·JournalMolecular Therapy·TypeExperimental study·DateMar 31, 2025

Could microRNAs help us understand why different birds react differently to being infected with bird flu?

A recent study found that different birds react differently to being infected with bird flu, and microRNAs may play a key role in this variation. The researchers analyzed blood samples from ruddy turnstones and found 163 different forms of microRNA, including two unique to birds.

SourceNorwegian University of Science and Technology·JournalJournal of Avian Biology·TypeSurvey·DateFeb 18, 2025

Fly vs. wasp: Stealing a defense move helps thwart a predator

Researchers found that fruit flies have stolen a toxin-producing gene from bacteria to defend against parasitic wasps, which can turn fly larvae into surrogate wombs for baby wasps. This discovery highlights the importance of horizontal gene transfer in animal evolution and suggests it may be more common than previously thought.

SourceUniversity of California - Berkeley·JournalCurrent Biology·TypeExperimental study·DateDec 23, 2024

In world 1st, high-quality feline iPSCs generated without genetic footprint

Researchers at Osaka Metropolitan University have successfully generated high-quality feline induced pluripotent stem cells (iPSCs) without a genetic footprint. These cells exhibit properties similar to human iPSCs and can differentiate into various cell types, making them a promising tool for veterinary regenerative medicine research.

SourceOsaka Metropolitan University·JournalRegenerative Therapy·TypeExperimental study·DateSep 4, 2024

To subvert immune response, COVID virus stimulates production of proteins without protective function

SARS-CoV-2 uses machinery of defense cells to induce expression of unproductive isoforms of key antiviral genes, disrupting normal protein production and immune response. The study provides fundamental information on potential targets for antiviral medications and immunomodulatory interventions.

SourceFundação de Amparo à Pesquisa do Estado de São Paulo·JournalInternational Journal of Molecular Sciences·DateAug 20, 2024

Finnish Vole fever spreading further south

A new study has discovered that bank voles in southern Sweden carry a virus that can cause hemorrhagic fever in humans, spreading the disease further south than previously known. The virus strain is closely related to strains from Finland and Karelia.

SourceUppsala University·JournalEmerging Infectious Diseases·TypeObservational study·DateMay 28, 2024

Dopamine inhibits the expression of hepatitis b virus surface and e antigens by activating the JAK/STAT pathway and upregulating interferon-stimulated gene 15 expression

A study found that dopamine inhibits the expression of HBV surface and e antigens in HepG2 cells, increasing interferon-stimulated gene 15 expression. The JAK/STAT pathway was also activated, leading to decreased HBV DNA and antigen expression in a mouse model.

SourceXia & He Publishing Inc.·JournalJournal of Clinical and Translational Hepatology·DateMay 14, 2024

How seaweed became multicellular

Researchers found that macroalgae acquired new genes for cell adhesion, differentiation, communication, and transport from viruses, which played a critical role in their evolution to multicellularity. The study provides valuable genomic resources for further studies on the biology of macroalgae.

SourceCell Press·JournalMolecular Plant·TypeExperimental study·DateApr 12, 2024

HPV’s hidden hand: New study by Pusan National University scientists reveals key details in head and neck cancer microenvironment

A recent study by Pusan National University scientists discovered the crucial role of PKM gene and EPHA2 pathway in HNSCC development. The research highlights the importance of HPV infection status in shaping the tumor microenvironment, enabling precision medicine for targeted treatment.

SourcePusan National University·JournalJournal of Medical Virology·TypeExperimental study·DateFeb 27, 2024

A rare recent case of retrovirus integration: An infectious gibbon ape leukaemia virus is colonising a rodent’s genome in New Guinea

Researchers have discovered a rare case of retrovirus integration in a rodent from New Guinea, revealing a new model for virus colonization. The white-bellied mosaic-tailed rat's genome contains the 'complete Melomys woolly monkey virus', which has characteristics of both exogenous and endogenous viruses.

SourceLeibniz Institute for Zoo and Wildlife Research (IZW)·JournalProceedings of the National Academy of Sciences·TypeData/statistical analysis·DateFeb 4, 2024

Scientists map the antigenic landscape

Researchers have successfully mapped the entire HLA class II landscape, predicting how pathogens are displayed on cell surfaces. The mapping reveals that multiple HLA variants play essential roles in autoimmune disorders and organ rejection, highlighting their potential for developing immunotherapy treatments.

SourceTechnical University of Denmark·JournalScience Advances·DateNov 24, 2023

An ancient anti-cancer mechanism: DISE

Researchers at Northwestern University identified a new evolutionarily conserved RNAi-based form of cell death called Death Induced by Survival gene Elimination (DISE), which targets essential survival genes in cancer cells. This mechanism is ancient and effective against all cancers tested.

SourceImpact Journals LLC·JournalOncotarget·TypeCommentary/editorial·DateOct 3, 2023

NEW STUDY: Discovery of chemical means to reverse aging and restore cellular function

A team of scientists at Harvard Medical School has identified six chemical cocktails that can restore cellular aging and rejuvenate human cells. The study builds upon the discovery of Yamanaka factors, which can convert adult cells into induced pluripotent stem cells, raising hopes for treating age-related diseases and injuries. The im...

SourceImpact Journals LLC·JournalAging-US·TypeExperimental study·DateJul 12, 2023

Virus-like transposons wage war on the species barrier

Researchers from IMBA identify a family of virus-like transposons called Mavericks that facilitate horizontal gene transfer (HGT) between reproductively isolated worm species. The study reveals the role of Mavericks in overcoming the species barrier, with potential applications in pathogen control and genomic innovation.

Innovative gene therapy may help treat a severe and fatal developmental epilepsy syndrome that affects children

Researchers at Tel Aviv University have developed an innovative gene therapy that shows promise in treating Dravet syndrome, a severe developmental epilepsy affecting children. The treatment was found to be effective in improving epilepsy, protecting against early death, and enhancing cognitive abilities.

SourceTel-Aviv University·JournalJournal of Clinical Investigation·DateJun 22, 2023

Key regulator of COVID viral receptor may be new drug target

Researchers have identified DYRK1A as a key regulator of the SARS-CoV-2 viral receptor, which is critical for entry into human tissues. Reducing DYRK1A activity decreases infection, providing new insights into COVID-19 causation and potential antiviral treatments.

SourcePLOS·JournalPLOS Biology·TypeExperimental study·DateJun 13, 2023