Results 261 to 270 of about 1,020,829 (348)
Translocation of androgen receptor and enhancement of nuclear phosphorylation activity in mouse submandibular gland by testosterone administration. [PDF]
元彦 吉田, Motohiko Yoshida
openalex
Phospholipid transfer protein(PLTP) plays a critical role in forming a complex with kinase A (AURKA) and P65. This interaction facilitates phosphorylation of P65 at Ser536, leading to the activation of the NF‐κB signaling pathway. Ultimately, this leads to the upregulation of downstream cytokines, including IL‐6, IL‐8, and CSF‐1, which promotes M2 ...
Xinyue Liang +14 more
wiley +1 more source
A stochastic mechanism drives fast substrate translocation in the AAA+ machine ClpB. [PDF]
Casier R +4 more
europepmc +1 more source
Endocytic Control of Cell‐Autonomous and Non‐Cell‐Autonomous Functions of p53
NUMB Ex3‐containing isoforms localize to the plasma membrane, where they recruit p53 through SNX9 and direct it to multivesicular bodies and exosomes. Exported p53 is taken up by neighboring cells and activates nuclear programs, revealing an intercellular, exosome‐based pathway that might help establish a tumor‐suppressive microenvironment.
Roberta Cacciatore +20 more
wiley +1 more source
Seed coating with plant growth-promoting rhizobacteria enhances potato (<i>Solanum tuberosum</i> L.) growth and yield. [PDF]
Hu J +5 more
europepmc +1 more source
TEAD1 Enhances Exosome Secretion and Promotes Exosome‐Mediated Tissue Regeneration
TEAD1 functions as a crucial molecular switch regulating exosome secretion in various cell types. TEAD1 enhances exosome secretion by upregulating key proteins associated with exosome secretion, including RAB11, CD9, and SNAP23. This study reveals a novel role for TEAD1 in regulating exosome secretion and tissue regeneration, particularly in diabetic ...
Yan Pu +9 more
wiley +1 more source
DNA translocation by the CMG helicase: the helical inchworm model. [PDF]
Batra S +4 more
europepmc +1 more source
A Central Somatic Transmission Mediates Proprioceptive Facilitation of Muscle Pain
Zhang et al. uncover a novel central mechanism for persistent muscle pain, in which TRPA1 sensitization in MeV proprioceptive neurons enhances somatic secretion. This, in turn, disinhibits descending pain control from neighboring noradrenergic locus coeruleus neurons via local GABAergic circuits, thereby promoting inflammatory muscle pain.
Xiaoyu Zhang +15 more
wiley +1 more source

