Molecule Information
General Information of the Molecule (ID: Mol04439)
| Name |
Guanine nucleotide-binding protein-like 3-like protein (GNL3L)
,Homo sapiens
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| Molecule Type |
Protein
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| Gene Name |
GNL3L
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| Gene ID | |||||
| Sequence |
MMKLRHKNKKPGEGSKGHKKISWPYPQPAKQNGKKATSKVPSAPHFVHPNDHANREAELK
KKWVEEMREKQQAAREQERQKRRTIESYCQDVLRRQEEFEHKEEVLQELNMFPQLDDEA T RKAYYKEFRKVVEYSDVILEVLDARDPLGCRCFQMEEAVLRAQGNKKLVLVLNKIDLV PK EVVEKWLDYLRNELPTVAFKASTQHQVKNLNRCSVPVDQASESLLKSKACFGAENLM RVL GNYCRLGEVRTHIRVGVVGLPNVGKSSLINSLKRSRACSVGAVPGITKFMQEVYLD KFIR LLDAPGIVPGPNSEVGTILRNCVHVQKLADPVTPVETILQRCNLEEISNYYGVSG FQTTE HFLTAVAHRLGKKKKGGLYSQEQAAKAVLADWVSGKISFYIPPPATHTLPTHLS AEIVKE MTEVFDIEDTEQANEDTMECLATGESDELLGDTDPLEMEIKLLHSPMTKIADA IENKTTV YKIGDLTGYCTNPNRHQMGWAKRNVDHRPKSNSMVDVCSVDRRSVLQRIMET DPLQQGQA LASALKNKKKMQKRADKIASKLSDSMMSALDLSGNADDGVGD Click to Show/Hide
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| Function |
Stabilizes TERF1 telomeric association by preventing TERF1recruitment by PML. Stabilizes TERF1 protein by preventing itsubiquitination and hence proteasomal degradation. Does so byinterfering with TERF1-binding to FBXO4 E3 ubiquitin-protein ligase.Required for cell proliferation. By stabilizing TRF1 protein duringmitosis, promotes metaphase-to-anaphase transition. Stabilizes MDM2protein by preventing its ubiquitination, and hence proteasomaldegradation. By acting on MDM2, may affect TP53 activity. Required fornormal processing of ribosomal pre-rRNA. Binds GTP.{ECO:0000269|PubMed:16251348, ECO:0000269|PubMed:17034816,ECO:0000269|PubMed:19487455, ECO:0000269|PubMed:21132010}.
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| Click to Show/Hide the Complete Species Lineage | |||||
Type(s) of Resistant Mechanism of This Molecule
Drug Resistance Data Categorized by Drug
Clinical Trial Drug(s)
1 drug(s) in total
| Drug Sensitivity Data Categorized by Their Corresponding Mechanisms | ||||
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| Disease Class: Lung adenocarcinoma [ICD-11: 2C25.0] | [1] | |||
| Sensitive Disease | Lung adenocarcinoma [ICD-11: 2C25.0] | |||
| Sensitive Drug | Calycosin | |||
| Molecule Alteration | Expression | Down-regulation |
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| Experimental Note | Revealed Based on the Cell Line Data | |||
| Cell Pathway Regulation | LDOC1/GNL3L/NFkappaB signalling pathway | Regulation | N.A. | |
| In Vitro Model | CL1-0 GEMR cells | Lung | Homo sapiens (Human) | N.A. |
| Experiment for Molecule Alteration |
Western blot assay | |||
| Experiment for Drug Resistance |
MTT assay; Flow cytometric assay; Colonyformation assay | |||
| Mechanism Description | Our results show that calycosin inhibits the proliferation and migration abilities of CL1-0 GEMR cells, and that these effects might be through the LDOC1/GNL3L/NFkappaB pathway. These findings improve our understanding of the anti-tumor activity and potential mechanisms of calycosin in gemcitabine-resistant lung cancer cells, and offer valuable support for the clinical application of calycosin in treating gemcitabine-resistant lung cancer. | |||
References
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