- Oligonucleotides
- mRNA
mRNA
-
mRNA (324)
Pig TRIM56 mRNA encodes the pig TRIM56 protein, an interferon-stimulated gene (ISG) that acts as an important innate immune factor. Overexpression of TRIM56 restricts viral replication by enhancing TLR3-TRAF3-mediated IFN-β production.
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mCherry mRNA encodes the mCherry fluorescent protein, which is derived from Anaplasma marginale. mCherry can be used as a fluorescent tracer in transfection and transgenic experiments or as a reporter of gene expression.
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The Cas9-T2A-GFP mRNA encodes a Cas9 nuclease gene with two nuclear localization signals (NLS) and a green fluorescent protein (GFP), which could be used in genome engineering experiments.
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The Cas9-T2A-GFP mRNA encodes a Cas9 nuclease gene with two nuclear localization signals (NLS) and a green fluorescent protein (GFP), which could be used in genome engineering experiments. The incorporation of N1-Methylpseudo-UTP can reduce the immunogenicity of the resulting mRNA.
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The Cre-T2A-GFP mRNA is a capped and polyadenylated messenger RNA encoding a Cre recombinase with a nuclear localization sequence (NLS) and a green fluorescent protein (GFP).
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The Cre-T2A-GFP mRNA is a capped and polyadenylated messenger RNA encoding a Cre recombinase with a nuclear localization sequence (NLS) and a green fluorescent protein (GFP). The incorporation of N1-Methylpseudo-UTP can reduce the immunogenicity of the resulting mRNA.
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Gaussia luciferase (GLuc) mRNA will express a luciferase protein, derived from the Gaussia princeps. luciferases are widely used in biotechnology, for microscopy and as reporter genes, for many of the same applications as fluorescent proteins.
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HHV-1 UL48 mRNA encodes the UL48 protein of human herpesvirus 1 (HHV-1). UL48 is a tanscriptional activator of immediate-early (IE) gene products (alpha genes). It acts as a key activator of lytic infection by initiating the lytic program through the assembly of the transcriptional regulatory VP16-induced complex composed of VP16 and two cellular factors, HCFC1 and POU2F 1.
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Human ACKR3 mRNA encodes the human atypical chemokine receptor 3 (ACKR3) protein, a member of the G-protein coupled receptor family. ACKR3 is a typical chemokine receptor that controls chemokine levels and localization via high-affinity chemokine binding that is uncoupled from classic ligand-driven signal transduction cascades, resulting instead in chemokine sequestration, degradation, or transcytosis.
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Human ACVR1C mRNA encodes the human activin A receptor type 1C (ACVR1C) protein, a type I receptor for the TGFB family of signaling molecules. Upon ligand binding, type I receptors phosphorylate cytoplasmic SMAD transcription factors, which then translocate to the nucleus and interact directly with DNA or in complex with other transcription factors.
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Human ACVR2A mRNA encodes the human activin A receptor type 2A (ACVR2A) protein, a member of the TGFB family. ACVR2A mediates signaling by forming heterodimeric complexes with various combinations of type I and type II receptors and ligands in a cell-specific manner. It may be associated with susceptibility to preeclampsia, a pregnancy-related disease which can result in maternal and fetal morbidity and mortality.
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Human ACVR2B mRNA encodes the human activin A receptor type 2B (ACVR2B) protein, a receptor that transduces the activin signal from the cell surface to the cytoplasm and is thus regulating many physiological and pathological processes including neuronal differentiation and neuronal survival, hair follicle development and cycling, FSH production by the pituitary gland, wound healing, extracellular matrix production, immunosuppression and carcinogenesis.
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Human ACVRL1 mRNA encodes the human activin A receptor like type 1 (ACVRL1) protein. ACVRL1 is a type I cell-surface receptor for the TGF-beta superfamily ligands BMP9/GDF2 and BMP10 and important regulator of normal blood vessel development.
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Human AREG mRNA encodes the human amphiregulin (AREG) protein, a member of the epidermal growth factor family. AREG interacts with the EGF/TGF-alpha receptor to promote the growth of normal epithelial cells, and inhibits the growth of certain aggressive carcinoma cell lines. It also functions in mammary gland, oocyte and bone tissue development.
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