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1.
Data Brief ; 28: 104893, 2020 Feb.
Article in English | MEDLINE | ID: mdl-31890777

ABSTRACT

This dataset is supplementary to the submitted research by Ref. [1]. RNAs were extracted from high molecular weight complexes, prepared with 100 kDa filtration of HEK293 Tet-on cells stably transfected with either F-HA-Txnip-V5-His or control vector. Cells were stimulated with 1 µg/mL doxycycline for 24 h, followed by overnight stimulation with 100 µM 4-thiouridine (4sU), 20 mM glucose, and 1 µM bortezomib for 14h. The extracted RNAs from Txnip overexpressing cells compared with control cells was analyzed by RNA-seq. Differentially expressed mRNAs, long noncoding RNAs (lncRNA) and transcripts of uncertain coding potential (TUCPs) are shown. Gene ontology and KEGG enrichment of these differential expressed RNAs is presented.

2.
Arch Biochem Biophys ; 677: 108159, 2019 11 30.
Article in English | MEDLINE | ID: mdl-31669268

ABSTRACT

Thioredoxin interacting protein (Txnip) is an α-arrestin protein that regulates pleiotropic biological responses. Txnip acts as a cancer suppressor and is a critical regulator of energy metabolism. To investigate molecular mechanisms involving Txnip, we searched for its protein binding partners using tandem affinity purification and proteomics analyses and identified several viable candidates, including HSP90, HSP70, and Prp31. We showed, by native PAGE, that Txnip is involved in the formation of high molecular weight complexes (1000-1300 kDa) in the nuclear fraction of cells treated with glucose and bortezomib. DTT treatment partly dissolved these high molecular weight complexes, suggesting that Txnip forms redox sensitive high-order nucleoprotein complexes. RNAse treatment slightly decreased the complex and RNA-seq showed differential expression of RNAs in the complex between Txnip protein overexpressing and control cells, indicating the involvement of RNAs in the complex. These results collectively provide a model whereby Txnip exerts its functions through multiple binding partners, forming transient higher-order complexes to regulate other signaling molecules.


Subject(s)
Carrier Proteins/metabolism , Eye Proteins/metabolism , Ribonucleoprotein, U4-U6 Small Nuclear/metabolism , Carrier Proteins/chemistry , Dithiothreitol/chemistry , Dithiothreitol/pharmacology , Eye Proteins/chemistry , HEK293 Cells , HSP70 Heat-Shock Proteins/metabolism , HSP90 Heat-Shock Proteins/metabolism , Humans , MCF-7 Cells , Molecular Weight , Oxidation-Reduction , Protein Multimerization/drug effects , RNA/analysis , RNA/metabolism , Ribonuclease, Pancreatic/pharmacology , Ribonucleoprotein, U4-U6 Small Nuclear/chemistry
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