Mechanical Properties and Micro-Mechanisms of Chromite Sand Frozen Sand Molds Prepared by Ultrasonic Vibration Assistance. [PDF]
Zhuang B, Yang H, Shan Z, Zhu Z, Ding D.
europepmc +1 more source
Loss of IGF‐1R impairs DNA‐PKcs recruitment to chromatin leading to defective end‐joining
IGF‐1R promotes radioresistance by facilitating DNA‐PKcs recruitment to chromatin, enabling non‐homologous end‐joining (NHEJ) repair of double‐strand breaks. Inhibition or loss of IGF‐1R disrupts this recruitment to damage sites, driving compensatory reliance on microhomology‐mediated end‐joining (MMEJ) repair.
Matthew O. Ellis +3 more
wiley +1 more source
Secreted proteins from <i>Bacillus subtilis</i> K1 induce apple resistance against gray mold. [PDF]
Li P, Sun Y, Feng B, Wei L.
europepmc +1 more source
Finding novel vulnerabilities of hypomorphic BRCA1 alleles
Synthetic lethality screens performed to identify novel vulnerabilities often model complete gene loss, thereby overlooking patient‐derived hypomorphic mutations. In this study, we have performed genome‐wide CRISPR screens on BRCA1 hypomorphic mutations, showing BRCA1I26A behaves like wild‐type, while BRCA1R1699Q mimics deficiency. Furthermore, we have
Anne Schreuder +10 more
wiley +1 more source
Closed-Loop Optogenetic Control in a Microplate Reader. [PDF]
Namboothiri HR +4 more
europepmc +1 more source
MITF maintains genome stability in nonmelanocyte lineages
MITF is essential for melanocyte survival and acts as an oncogene in 10%–20% of melanomas. We show that MITF depletion causes genome instability in nonmelanocytic cells, leading to LATS2‐mediated P53 activation, cell cycle arrest, and apoptosis. This study highlights the role of MITF as a genome maintenance factor beyond the melanocyte lineage. Created
Drifa H. Gudmundsdottir +13 more
wiley +1 more source
A Study on Melt Flow in Green Sand Mold
openaire +1 more source
Influence of Lateral Perforation on the Biomechanical Stability of Thoracic Pedicle Screws. [PDF]
Bullert B +7 more
europepmc +1 more source
Oncogenic DMTF1β promotes cancer cell motility by regulating autophagy through ULK1 stabilization
In the current study, we demonstrate that the oncogene DMTF1β regulates ULK1 stability by reducing its proteasomal degradation in cancer cells. This stabilization enables ULK1 to induce autophagy, which in turn facilitates cancer cell migration. Consequently, reduced DMTF1β levels lead to decreased autophagy and impaired cancer cell migration.
Jun Xu +13 more
wiley +1 more source
Unveiling the deformation and crack mechanism of glass nanostructure embossing: A molecular dynamics study at experimental scale. [PDF]
Cui X +5 more
europepmc +1 more source

