MLO | Phase separation |
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Class | LLPS |
Synonyms | - |
Factor type | protein |
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Factor name | NCAP_SARS2 |
NCBI Gene ID | 43740575 |
UniProt ID | P0DTC9 |
Classification | other diseases |
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Disease | COVID-19 |
More Disease Information |
Disease | COVID-19 |
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Disease Ontology | DOID:0080600 |
MeSH | D000086382 |
ICD-10-CM | U07.1 |
OMIM |
MLO change | Size: - | Number: - | Assembly: - | ||
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Dynamic: - | Others: - | ||||
Description: We found that RNAs triggered the robust LLPS of N protein both in vitro and in vivo. Transfection of N-expressing cells with poly(I:C) or the vRNA (3′ UTR), which is shared by all the sub-genome mRNAs8, resulted in the formation of N protein condensates. | |||||
Publication note | We found that RNAs triggered the robust LLPS of N protein both in vitro and in vivo. The deletion of any domains, including CTD, NTD and IDRs, disrupted the RNA-binding and LLPS ability of N protein. R203K/G204R gained greater ability to undergo LLPS in v | ||||
Organism | Homo sapiens | Cell line or tissue | A549, H1299 | ||
Experiment evidence | Direct experiment | Reference | 33837182 | ||
In vivo PS evidence | FRAP: Yes | 1,6-hexa treatment: No | Spherical shape: No | ||
Fusion&Fission: Yes | PS role: Client |
Mutation | R203K, G204R | Expression change | - |
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PTM | Position Residue | Modification | Modifying enzyme |
- | - | - | |
Description | Mutation: The polymorphism of R203K/G204R, which exhibited a higher propensity to undergo LLPS in the presence of RNAs, showed a greater effect on the inhibition of IFN expression. Expression change: - PTM: - |
Drugs from DrugBank | - | |
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Molecules from BindingDB(PubChem CID) | - | |
Molecules from PDBBind | - | |
Interference Note | We then examined the LLPS of N protein with the application of increasing concentrations of GCG, the results showed that 12.5 μM was sufficient to block the N protein LLPS. We further titrated the concentrations of GCG below 10 μM and found that 6–8 μM we |
Pscore overall score | - | PSPer | |
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catGRANULE overall score | - | R+Y | |
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Chao Hou, Haotai Xie, Yang Fu, Yao Ma, Tingting Li. MloDisDB: A manually curated DataBase of the relations between MembraneLess Organelles and DISeases