Results 201 to 210 of about 1,589,396 (359)
A guide to reactive oxygen species in tumour hypoxia: measurement and therapeutic implications
Hypoxia reshapes tumour redox landscapes by altering compartmental ROS production (mitochondria, NOX, ER, peroxisomes). Accurate interpretation requires oxygen‐contextualised measurement (live biosensors, chemical probes, EPR, LC–MS) and awareness of artefacts (reoxygenation, probe specificity).
Lina Hacker +3 more
wiley +1 more source
RPA1 protects DNA damage-induced PANoptosis in limb development. [PDF]
Yin Q +11 more
europepmc +1 more source
Identification of the DNA damage-responsive element of RNR2 and evidence that four distinct cellular factors bind it. [PDF]
Stephen J. Elledge, Ronald W. Davis
openalex +1 more source
Current trends in single‐cell RNA sequencing applications in diabetes mellitus
Single‐cell RNA sequencing is a powerful approach to decipher the cellular and molecular landscape at a single‐cell resolution. The rapid development of this technology has led to a wide range of applications, including the detection of cellular and molecular mechanisms and the identification and introduction of novel potential diagnostic and ...
Seyed Sajjad Zadian +6 more
wiley +1 more source
Cholangiocytes' primary cilia regulate DNA damage response and repair. [PDF]
Peixoto E +6 more
europepmc +1 more source
Cleavable N‐terminal Thioredoxin fusion enabled soluble expression and purification of otherwise insoluble SARS‐CoV‐2 Nucleocapsid (N) protein. A four‐step purification strategy yielded highly homogeneous, RNA‐free N protein. Binding assays showed high RNA affinity (Kd ~ 28 nm). The study will facilitate high‐resolution structural studies of N protein,
Shweta Singh, Gagan D. Gupta
wiley +1 more source
The role of lncRNA SNHG15 in UV-induced DNA damage repair. [PDF]
Zhang X +7 more
europepmc +1 more source
Two‐way inhibition of PAX5 transcriptional activity by PAX5::CBFA2T3
PAX5::CBFA2T3 (PAX5‐C) is a fusion protein of the B‐cell transcription factor, PAX5, and is found in B‐cell ALL. We propose a putative model of two‐way inhibition of PAX5 transcriptional activity by PAX5‐C. There are two ways of repression by PAX5‐C: DNA‐binding‐dependent way and HDAC‐dependent way, with either being sufficient for the repression. HDAC
Reina Ueno +12 more
wiley +1 more source

