Results 181 to 190 of about 510,810 (316)
Ultrasound‐Actuated Gene Editing in Human Kidney Organoids
Peptide‐stabilized nanoemulsions enable spatially controlled, ultrasound‐triggered delivery of gene‐editing proteins deep within human kidney organoid tissues. Focused acoustic pulses drive droplet vaporization, propelling cargo into target renal cells while preserving native tissue microarchitecture. This non‐viral platform improves both the depth and
Michael A. Miller +6 more
wiley +1 more source
Redox-Dependent Activation of Matrix Metalloproteinases Regulates Influenza A Virus Replication in Neuronal Cells. [PDF]
Prezioso C +7 more
europepmc +1 more source
When a master transcription factor (TF) is lost, bacteria can rapidly rewire gene regulatory networks by co‐opting related regulators. Using experimental evolution in Pseudomonas fluorescens, we show that TF promiscuity (low‐level, non‐cognate binding) provides the raw material for rewiring. Successful co‐option follows a predictable hierarchy governed
Tiffany B. Taylor, Alan M. Rice
wiley +1 more source
Polyamines as Gatekeepers of Virus Replication and Central Nervous System Homeostasis. [PDF]
Stacey SP, Mounce BC.
europepmc +1 more source
Redox‐Dependent Chaperoning of GBF1 Condensates Regulates Seed Germination in Arabidopsis
In dormant seeds (low ROS), GBF1 forms liquid condensates to repress the germination gene CathB3, and the chaperone GIP1 maintains condensate liquidity and repressive activity. Upon imbibition (high ROS), ROS oxidize GIP1 during germination, impairing its chaperone function.
Yunying Wang, Xiaofeng Fang
wiley +1 more source
Host factors in parainfluenza virus replication: from entry to innate immunity evasion. [PDF]
Lin X +5 more
europepmc +1 more source
Synthetic Toll‐Like Receptors for Control of Innate Immunity With Far‐Red Light
Synthetic Toll‐like receptors (TLRs) are engineered by replacing their natural sensing regions with a far‐red‐light‐responsive module from a bacterial phytochrome. These synthetic receptors enable light‐controlled regulation of immune signaling in mammalian cells.
Anna V. Leopold, Vladislav V. Verkhusha
wiley +1 more source
USP17L13 Enhances Influenza a Virus Replication by Mediating the Degradation of RIG-I and MDA5. [PDF]
Zhang Y +8 more
europepmc +1 more source
FGF13 is upregulated in DRG neurons of PIPNP model mice. DRG neuron‐specific knockout of FGF13 ameliorates PIPNP symptoms. Mechanistically, FGF13 potentiates microtubule detyrosination by promoting VASH1 binding to microtubules. FGF13 knockout suppresses VASH1‐mediated microtubule detyrosination and promotes α‐tubulin tyrosination.
Yiming Dong +10 more
wiley +1 more source

