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viral mRNA

" in MedChemExpress (MCE) Product Catalog:

26

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3

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5

Isotope-Labeled Compounds

7

Oligonucleotides

Targets Recommended:
Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-101938
    Sinefungin
    5 Publications Verification

    Adenosyl-Ornithine; A-9145; Antibiotic 32232RP

    Histone Methyltransferase Fungal Antibiotic Parasite Infection Inflammation/Immunology
    Sinefungin is a potent inhibitor of virion mRNA(guanine-7-)-methyltransferase, mRNA(nucleoside-2'-)-methyltransferase, and viral multiplication . Sinefungin, a SET7/9 inhibitor, ameliorates renal fibrosis by inhibiting H3K4 methylation .
    Sinefungin
  • HY-N0086
    N6-Methyladenosine
    5+ Cited Publications

    6-Methyladenosine; N-Methyladenosine

    Influenza Virus Endogenous Metabolite Infection
    N6-Methyladenosine is the most prevalent internal (non-cap) modification present in the messenger RNA (mRNA) of all higher eukaryotes. N6-Methyladenosine can modifies viral RNAs and has antiviral activities.
    N6-Methyladenosine
  • HY-156346

    SARS-CoV Infection
    HCoV-OC43-IN-1 (Compound IV-16) is a coronavirus HCoV-OC43 inhibitor. HCoV-OC43-IN-1 has antiviral efficacy (EC50: 90 nM). HCoV-OC43-IN-1 inhibits the mRNA level and expression of viral nucleocapsid protein (NP) .
    HCoV-OC43-IN-1
  • HY-143750

    Influenza Virus Infection
    Cap-dependent endonuclease-IN-7 is a potent inhibitor of cap-dependent endonuclease (CEN). Cap-dependent endonuclease-IN-7 Inhibits the synthesis of viral mRNA and eventually inhibits virus proliferation. Cap-dependent endonuclease-IN-7 has the potential for the research of viral infections (including influenza A, influenza B and influenza C) (extracted from patent WO2020177715A1, compound 5)
    Cap-dependent endonuclease-IN-7
  • HY-176305S

    Isotope-Labeled Compounds Neurological Disease
    Neurofilament, U- 15N is the 15N-labeled Neurofilament.
    Neurofilament, U-15N
  • HY-171984

    Liposome Infection Inflammation/Immunology Cancer
    514O6,10 is an ionizable lipidoid containing a branched-tail. 514O6,10 can be used to synthesize lipid nanoparticles (LNPs) for delivering mRNA to natural killer and dendritic cells within the lung. 514O6,10 can be used for the RNA therapies for lung diseases associated with immune cell dysregulation, including cancer, viral infections, and autoimmune disorders research .
    514O6,10
  • HY-174661

    mRNA Inflammation/Immunology
    Human IFNK mRNA encodes the human interferon kappa (IFNK) protein, a member of the type I interferon family. Type I interferons are a group of related glycoproteins that play an important role in host defenses against viral infections.
    Human IFNK mRNA
  • HY-174662

    mRNA Inflammation/Immunology
    Human IFNG mRNA encodes the human interferon gamma (IFNG) protein, a member of the type II interferon class. IFNG is secreted by cells of both the innate and adaptive immune systems. The active protein is a homodimer that binds to the interferon gamma receptor which triggers a cellular response to viral and microbial infections.
    Human IFNG mRNA
  • HY-174569

    mRNA Inflammation/Immunology
    Human NFKB1 mRNA encodes the human nuclear factor kappa B subunit 1 (NFKB1) protein, a transcription regulator that is activated by various intra- and extra-cellular stimuli such as cytokines, oxidant-free radicals, ultraviolet irradiation, and bacterial or viral products. Inappropriate activation of NFKB has been associated with a number of inflammatory diseases while persistent inhibition of NFKB leads to inappropriate immune cell development or delayed cell growth. NFKB is a critical regulator of the immediate-early response to viral infection.
    Human NFKB1 mRNA
  • HY-174664

    mRNA Inflammation/Immunology
    Human IFNB1 mRNA encodes the human interferon beta 1 (IFNB1) protein, a cytokine that belongs to the interferon family. IFNB1 belongs to the type I class of interferons, which are important for defense against viral infections. In addition, type I interferons are involved in cell differentiation and anti-tumor defenses.
    Human IFNB1 mRNA
  • HY-173189

    5'-O-Triphosphoryladenylyl-(2'→5')-adenylyl-(2'→5')-adenosine

    RSV DNA/RNA Synthesis Infection Inflammation/Immunology Cancer
    2-5A is a 5'-triphosphorylated (2',5') oligoadenylate. 2-5A is an immunotransmitter that fuels RNase L immunity. 2-5A degrades viral mRNA and inhibits protein synthesis by binding to RNase L and activating its endoribonuclease activity. 2-5A can be used in RSV and cancer research .
    2-5A
  • HY-174517

    mRNA Inflammation/Immunology
    Human TNFRSF14 mRNA encodes the human TNF receptor superfamily member 14 (TNFRSF14) protein, a member of the TNF receptor superfamily. TNFRSF14 functions in signal transduction pathways that activate inflammatory and inhibitory T-cell immune response. It binds herpes simplex virus (HSV) viral envelope glycoprotein D (gD), mediating its entry into cells.
    Human TNFRSF14 mRNA
  • HY-174720

    mRNA Inflammation/Immunology
    Human EIF2AK2 mRNA encodes the human eukaryotic translation initiation factor 2 alpha kinase 2 (EIF2AK2) protein, a serine/threonine protein kinase that is activated by autophosphorylation after binding to dsRNA. EIF2AK2 plays a key role in the innate immune response to viral infection and is also involved in the regulation of signal transduction, apoptosis, cell proliferation and differentiation.
    Human EIF2AK2 mRNA
  • HY-174525

    mRNA Inflammation/Immunology
    Human TLR3 mRNA encodes the human toll like receptor 3 (TLR3) protein, a member of the Toll-like receptor (TLR) family which plays a fundamental role in pathogen recognition and activation of innate immunity. TLR3 recognizes dsRNA associated with viral infection, and induces the activation of NF-kappaB and the production of type I interferons. It may thus play a role in host defense against viruses.
    Human TLR3 mRNA
  • HY-18684

    5'-Isobutylthioadenosine; 5'-Deoxy-5'-isobutylthioadenosine

    Nucleoside Antimetabolite/Analog HSV Parasite Infection Metabolic Disease Cancer
    SIBA (5'-Isobutylthioadenosine) is a transmethylation inhibitor (SAH (HY-19528) analogue), with potent anti-proliferative activity. SIBA reversibly inhibits the production of HSV-1 by blocking methylation, specifically by blocking the 5' end-capping of viral mRNA. SIBA also inhibits the growth of tumour cells in vitro and metastatic spread in vivo. SIBA can be used in cancer, HSV-1 infection and anti-malaria studies .
    SIBA
  • HY-N0086S2

    6-Methyladenosine-13C4; N-Methyladenosine-13C4

    Isotope-Labeled Compounds Influenza Virus Endogenous Metabolite Infection
    N6-Methyladenosine- 13C4 (6-Methyladenosine- 13C4; N-Methyladenosine- 13C4) is 13C-labeled N6-Methyladenosine (HY-N0086). N6-Methyladenosine is the most prevalent internal (non-cap) modification present in the messenger RNA (mRNA) of all higher eukaryotes. N6-Methyladenosine can modifies viral RNAs and has antiviral activities.
    N6-Methyladenosine-13C4
  • HY-N0086S3

    6-Methyladenosine-13C3; N-Methyladenosine-13C3

    Isotope-Labeled Compounds Influenza Virus Endogenous Metabolite Infection
    N6-Methyladenosine- 13C3 (6-Methyladenosine- 13C3) is 13C-labeled N6-Methyladenosine (HY-N0086). N6-Methyladenosine is the most prevalent internal (non-cap) modification present in the messenger RNA (mRNA) of all higher eukaryotes. N6-Methyladenosine can modifies viral RNAs and has antiviral activities .
    N6-Methyladenosine-13C3
  • HY-N0086S

    6-Methyladenosine-d3; N-Methyladenosine-d3

    Isotope-Labeled Compounds Influenza Virus Endogenous Metabolite Infection
    N6-Methyladenosine-d3 (6-Methyladenosine-d3; N-Methyladenosine-d3) is a deuterium labeled N6-Methyladenosine (HY-N0086). N6-Methyladenosine is the most prevalent internal (non-cap) modification present in the messenger RNA (mRNA) of all higher eukaryotes. N6-Methyladenosine can modifies viral RNAs and has antiviral activities.
    N6-Methyladenosine-d3
  • HY-112163
    Zotatifin
    Maximum Cited Publications
    8 Publications Verification

    eFT226

    Eukaryotic Initiation Factor (eIF) SARS-CoV Apoptosis Infection Cancer
    Zotatifin (eFT226) is a potent, selective, and well-tolerated eIF4A inhibitor. Zotatifin promotes eIF4A binding to specific mRNA sequences with recognition motifs in the 5’-UTRs (IC50=2 nM) and interferes with the assembly of the eIF4F initiation complex . Zotatifin shows robust antiviral effects, it effectively reduces viral infectivity by inhibiting SARS-CoV-2 NP protein biogenesis (IC90=37 nM) . Zotatifin induces cell apoptosis .
    Zotatifin
  • HY-173189A

    5'-O-Triphosphoryladenylyl-(2'→5')-adenylyl-(2'→5')-adenosine pentasodium

    RSV DNA/RNA Synthesis Infection Inflammation/Immunology Cancer
    2-5A (5'-O-Triphosphoryladenylyl-(2'→5')-adenylyl-(2'→5')-adenosine) pentasodium is a 5'-triphosphorylated (2',5') oligoadenylate. 2-5A pentasodium is an immunotransmitter that fuels RNase L immunity. 2-5A pentasodium degrades viral mRNA and inhibits protein synthesis by binding to RNase L and activating its endoribonuclease activity. 2-5A pentasodium can be used in RSV and cancer research .
    2-5A pentasodium
  • HY-154968

    RSV Infection
    RSV L-protein-IN-5 (compound E) is a potent inhibitor of Respiratory syncytial virus (RSV) (EC50=0.1 μM). RSV L-protein-IN-5 inhibits Polymerase (IC50=0.66 μM),and blocks RSV mRNA synthesis by inhibiting guanylation of viral transcripts. RSV L-protein-IN-5 shows moderate cytotoxicity (CC50=10.7 μM,HEp-2),also exhibits activity and lowers virus titers in mouse models of RSV infection .
    RSV L-protein-IN-5
  • HY-115574

    RSV Infection
    RSV L-protein-IN-1 (compound D) is a potent inhibitor of Respiratory syncytial virus (RSV) (EC50=0.021 μM). RSV L-protein-IN-1 inhibits Polymerase (IC50=0.089 μM),and blocks RSV mRNA synthesis by inhibiting guanylation of viral transcripts. RSV L-protein-IN-1 shows moderate cytotoxicity (CC50=8.4 μM,HEp-2),also exhibits activity and lowers virus titers in mouse models of RSV infection .
    RSV L-protein-IN-1
  • HY-W019670
    N4-Acetylcytidine
    1 Publications Verification

    Endogenous Metabolite Histone Acetyltransferase Enterovirus NOD-like Receptor (NLR) Infection Neurological Disease Metabolic Disease Inflammation/Immunology Cancer
    N4-acetylcytidine (N4A) is an endogenous nucleoside metabolite from the degradation of tRNA. N4-Acetylcytidine is formed by N-acetyltransferase 10 and other enzymes. N4-acetylcytidine might sustain NLRP3 inflammasome activation via induction of HMGB1 expression and releasee. N4-Acetylcytidine modifies mRNA, tRNA and rRNA, affecting their stability, translation efficiency (such as enterovirus 71 RNA). N4-Acetylcytidine is used in the study of cancer, neuroinflammatory diseases, viral infections and obesity .
    N4-Acetylcytidine
  • HY-W753593

    Isotope-Labeled Compounds Enterovirus NOD-like Receptor (NLR) Histone Acetyltransferase Endogenous Metabolite Infection Neurological Disease Metabolic Disease Inflammation/Immunology Cancer
    N4-Acetylcytidine- 13C5 is the 13C-labeled N4-Acetylcytidine (HY-W019670). N4-acetylcytidine (N4A) is an endogenous nucleoside metabolite from the degradation of tRNA. N4-Acetylcytidine is formed by N-acetyltransferase 10 and other enzymes. N4-acetylcytidine might sustain NLRP3 inflammasome activation via induction of HMGB1 expression and releasee. N4-Acetylcytidine modifies mRNA, tRNA and rRNA, affecting their stability, translation efficiency (such as enterovirus 71 RNA). N4-Acetylcytidine is used in the study of cancer, neuroinflammatory diseases, viral infections and obesity .
    N4-Acetylcytidine-13C5
  • HY-N0086R

    6-Methyladenosine (Standard); N-Methyladenosine (Standard)

    Endogenous Metabolite Influenza Virus Reference Standards Infection
    N6-Methyladenosine (Standard) is the analytical standard of N6-Methyladenosine. This product is intended for research and analytical applications. N6-Methyladenosine is the most prevalent internal (non-cap) modification present in the messenger RNA (mRNA) of all higher eukaryotes. N6-Methyladenosine can modifies viral RNAs and has antiviral activities. In Vitro: N6-methyladenosine (m6A) is selectively recognized by the human YTH domain family 2 (YTHDF2) protein to regulate mRNA degradation. N6-methyladenosine (m6A), a prevalent internal modification in the messenger RNA of all eukaryotes, is post-transcriptionally installed by m6A methyltransferase (e.g., MT-A70) within the consensus sequence of G(m6A)C (70%) or A(m6A)C (30%). N6-methyladenosine (m6A)-containing RNAs are greatly enriched in the YTHDF-bound portion and diminished in the flow-through portion . N6-methyladenosine (m6A), the most abundant internal RNA modification, functions in diverse biological processes, including regulation of embryonic stem cell self-renewal and differentiation. N6-methyladenosine (m6A) is a large protein complex, consisting in part of methyltransferase-like 3 (METTL3) and methyltransferase-like 14 (METTL14) catalytic subunits .
    N6-Methyladenosine (Standard)
  • HY-165603

    Liposome VEGFR FGFR Cardiovascular Disease Inflammation/Immunology Cancer
    Si5-N14 is a key component of siloxane-incorporated lipid nanoparticles (SiLNP), possessing pro-vascular repair and anti-tumor activities. In the transgenic GFP mouse model, Si5-N14 can mediate CRISPR-Cas9 editing. In the Lewis lung carcinoma (LLC) tumor-bearing mouse model, Si5-N14 can knock out the expression of Vascular Endothelial Growth Factor Receptor 2 (VEGFR2) to exert an anti-tumor effect. In a mouse model of lung injury induced by viral infection, the delivery of Fibroblast Growth Factor-2 (FGF-2) mRNA via Si5-N14 can promote vascular repair, increase blood oxygen levels, and improve lung function. Si5-N14 shows promise for research in the fields of oncology, pneumonia, and cardiovascular diseases .
    Si5-N14

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