Results 201 to 210 of about 5,918,106 (339)
"Cooperative collapse" of the denatured state revealed through Clausius-Clapeyron analysis of protein denaturation phase diagrams. [PDF]
Tischer A +3 more
europepmc +1 more source
Schematic illustration demonstrating that hepatic Mettl3 depletion significantly elevates the secretion of Mif and Csf1. This elevation facilitates Trem2+ macrophage infiltration and triggers cholangiocyte remodeling through the Spp1‐Cd44 interaction, resulting in spontaneous PSC development in vivo.
Wenting Pan +19 more
wiley +1 more source
Do soft anions promote protein denaturation through binding interactions? A case study using ribonuclease A. [PDF]
Francisco OA +3 more
europepmc +1 more source
Denaturation of proteins by surfactants studied by the Taylor dispersion analysis
Aldona Jelińska +5 more
openalex +2 more sources
Protein thermal denaturation is modulated by central residues in the protein structure network [PDF]
Valquiria P. Souza +3 more
openalex +1 more source
Upregulated TRMT6 forms aberrant hypermethylation of a specific tRNA pool and serves as a predictor of poor prognosis in TNBC. This m1A modification in tRNAs enhances translation of FTH1 and FTL, reducing the pool of bioavailable Fe2⁺. Reduced Fe2+ availability impairs RSL3‐induced lipid peroxidation and tumor progression.
Yuqing Lei +12 more
wiley +1 more source
Denaturation of T4 DNA by an in vitro processed gene 32‐protein [PDF]
Junko Hosoda +2 more
openalex +1 more source
Stroke‐induced lactate accumulation promotes p300‐mediated lactylation of methyl‐CpG binding protein 2 (MeCP2) at lysine 210, which reprograms microglial metabolism toward glycolysis and activates the hexokinase 2 (HK2)/mTOR axis. This cascade promotes proinflammatory responses and impairs neurofunctional outcomes.
Zengyu Zhang +12 more
wiley +1 more source
Organic Electrochemical Transistors in Tissue‐Interfaced Bioelectronics
This article reviews the design, fabrication, and biological application of organic electrochemical transistors (OECTs), emphasizing their potential in tissue‐interfaced bioelectronics. It covers the fundamental principles of OECTs, strategies for enhancing tissue interfacing, and the development of skin‐mounted and implantable systems.
Ruixiang Bai, Zeyu Zhao, Feng Yan
wiley +1 more source

