Transfected Stable Cell Lines
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Precision reporter, kinase, immune receptor, biosimilar, Cas9, and knockout stable cell lines for diverse applications.
Cat. No. : PMRN-0071
| Cat. No. | PMRN-0071 |
| Description | The FGF11 mRNA encodes the human fibroblast growth factor 11 (FGF11) protein, a member of the fibroblast growth factor (FGF) family. FGF11 probably involves in nervous system development and function. |
| Gene Type | Other |
| RNA Type | mRNA |
| Gene Name | FGF11 |
| Species | Homo sapiens (Human) |
| Alias | FGF-11, FHF-3, FHF3 |
| Features |
• mRNA synthesized on error free sequence verified plasmid DNA template • 100% replacement of UTP with modified nucleotides 5-Methoxy-UTP • Cap 1 Capping and poly-A tailed incorporated • Degrades the DNA template after RNA synthesis with DNase |
| Sequence | MAALASSLIR QKREVREPGG SRPVSAQRRV CPRGTKSLCQ KQLLILLSKV RLCGGRPARP DRGPEPQLKG IVTKLFCRQG FYLQANPDGS IQGTPEDTSS FTHFNLIPVG LRVVTIQSAK LGHYMAMNAE GLLYSSPHFT AECRFKECVF ENYYVLYASA LYRQRRSGRA WYLGLDKEGQ VMKGNRVKKT KAAAHFLPKL LEVAMYQEPS LHSVPEASPS SPPAP |
| Storage | Store at or below -70°C. Avoid repeated freeze/thaw cycles. Aliquot if necessary using RNase-free equipment, reagents, pipet tips, tubes, and containers. |
A: FGF11 mRNA is a messenger RNA molecule encoding human fibroblast growth factor 11.
A: The protein encoded by FGF11 mRNA is involved in various biological processes, including neural development, cell proliferation, and differentiation.
A: FGF11 mRNA is widely expressed in multiple tissues, including the central nervous system, heart, muscles, and kidneys.
A: The expression of FGF11 mRNA is influenced by various regulatory mechanisms, including the binding of transcription factors and the activation of signaling pathways.
A: FGF11 mRNA is associated with a variety of diseases, including neural Degenerative disease, cardiovascular diseases and muscle diseases.
A: The protein encoded by FGF11 mRNA plays an important regulatory role in neural development, participating in processes such as neuronal migration, differentiation, and synaptic formation.
A: The protein encoded by FGF11 mRNA plays an important role in muscle development and functional maintenance, and its mutations may lead to the occurrence of muscle diseases.
A: The study of FGF11 mRNA may provide new potential targets and strategies for the treatment of neural Degenerative disease, cardiovascular diseases and muscle diseases.
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Rapid and simple expression of FGF11 mRNA.
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