Transfected Stable Cell Lines
Reliable | High-Performance | Wide Rage
Precision reporter, kinase, immune receptor, biosimilar, Cas9, and knockout stable cell lines for diverse applications.
| Cat.No. | Product Name | Price |
|---|---|---|
| CSC-DC009824 | Panoply™ Human MSI1 Knockdown Stable Cell Line | Inquiry |
| CSC-SC009824 | Panoply™ Human MSI1 Over-expressing Stable Cell Line | Inquiry |
| Cat.No. | Product Name | Price |
|---|---|---|
| AD10241Z | Human MSI1 adenoviral particles | Inquiry |
| LV18670L | human MSI1 (NM_002442) lentivirus particles | Inquiry |
| Cat.No. | Product Name | Price |
|---|---|---|
| SHH203735 | shRNA set against Rat Msi1(NM_148890.1) | Inquiry |
| SHH203753 | shRNA set against Mouse Msi1(NM_008629.1) | Inquiry |
| SHH345672 | shRNA set against Human MSI1 (NM_002442.3) | Inquiry |
| SHH345676 | shRNA set against Mouse MSI1 (NM_008629.1) | Inquiry |
| SHH345680 | shRNA set against Rat MSI1 (NM_148890.1) | Inquiry |
| SHW008070 | shRNA set against Danio rerio MSI1 (NM_001013516) | Inquiry |
| Cat.No. | Product Name | Price |
|---|---|---|
| CDFL007910 | Mouse Msi1 cDNA Clone(NM_008629.1) | Inquiry |
| CDFR014557 | Rat Msi1 cDNA Clone(NM_148890.1) | Inquiry |
| MiUTR1M-07335 | MSI1 miRNA 3'UTR clone | Inquiry |
| MiUTR1R-04017 | MSI1 miRNA 3'UTR clone | Inquiry |
| MiUTR4H-TG11764 | MSI1 miRNA 3'UTR clone | Inquiry |
| CDCB169545 | Danio rerio MSI1 ORF Clone (NM_001013516) | Inquiry |
| CDCB186215 | Rabbit MSI1 ORF clone (XM_008272304.1) | Inquiry |
| CDCL134599 | Human Msi1 ORF clone (NM_008629.1) | Inquiry |
| CDCR381644 | Rat Msi1 ORF Clone(NM_148890.1) | Inquiry |
In 1990, the first member of the Musashi (Msi) family, Msi1, was identified in the neurological system of Drosophila. In eukaryotes, the human Msi1 N-terminus contains two conserved RNA recognition domains (RNAs), which play an important role in the regulation of post-transcriptional gene expression and can be involved in RNA splicing, polyadenylation, Sequence editing, RNA transport, maintenance of RNA stabilization and degradation, intracellular localization and translational control.
Figure 1. MSI1, positively regulates the Wnt and Notch signaling pathways by binding to and inhibiting the translation of target mRNA. (Smith, A. R., et al. 2015)
Expression Distribution of Msi1
In mammals, Msi1 protein-positive particles are mainly located in the cytoplasm and nucleus, which can determine cell fate at various points, such as maintaining stem cell characteristics, cell differentiation and tumor formation. Msi1 is highly expressed in many cancers such as hepatocellular carcinoma, colorectal cancer, and atypical teratoid/gravitate tumors. Its role is to promote the growth of tumor cells and inhibit the apoptosis of tumor cells. In normal tissue, its expression is limited to stem cells. Currently, Msi1 is a neural stem cell marker and is also expressed in tissues other than the nervous system. Recent studies have shown that Msi1 is expressed in a variety of pathological tissues other than the nervous system (benign and malignant), and the expression rate of Msi1 in malignant tumors is significantly higher than that in benign lesions. Some scholars have studied the expression of Msi1 in the normal stomach, small intestine and descending intestinal mucosa, and the results suggest that Msi1 may become a tumor cell specific marker. Studies have shown that knocking out Msi1 RNA-binding proteins can arrest tumor growth in vivo, decrease cell proliferation, and increase apoptosis.
Msi1 is a positive regulator of Notch signaling-mediated transcription, and Notch signaling determines cell fate by affecting cell proliferation, differentiation, and apoptosis. However, Notch signaling can activate stimulating cell proliferation and inhibit cell proliferation by regulating cell type-specific and content-related pathways in the cell cycle. Msi1 works together by the following aspects: 1) Enhancing the Notch signaling pathway by inhibiting post-transcriptional translation of m-Numb mRNA, thereby promoting cell self-renewal, proliferation and differentiation potential; 2) Msi1 is specifically associated with the target gene Hes1 of the Notch signaling pathway after transcriptional activation, promoting tumor formation and development; 3) Msi1 binds to the characteristic sequence on the 3'-UTR of p21, inhibits p21 expression and participates in cell cycle regulation; 4) Msi1 also passes A unique autocrine signaling pathway activates Wnt and Notch signaling pathways.
Msi1 and Tumor
In the study of colon cancer, it was found that the expression of Msi1 was induced by the Notch3 mechanism to induce stimulation of DLL4, and the level of Msi1 was increased by inhibiting Numb to maintain Notch1 signal. These observations highlight the regulation of Notch activity as a novel feedforward loop for cancer cells. The study demonstrated the expression of Msi1 protein by immunostaining, immunohistochemistry and RNA, and confirmed that Msi1 is a novel prognostic marker for colon cancer patients, which is abnormally expressed during colon cancer metastasis, indicating that it is a potential therapeutic target. It was found that Msi1 is expressed in human colon cancer SW-480 cells, and silencing Msi1 has a negative regulatory effect on cancer cell proliferation, which can significantly inhibit its growth and proliferation.
References: