Results 191 to 200 of about 219,064 (327)
The Hypercomplex Genome of an Insect Reproductive Parasite Highlights the Importance of Lateral Gene Transfer in Symbiont Biology. [PDF]
Frost CL+6 more
europepmc +1 more source
NAD Biosynthesis Evolution in Bacteria: Lateral Gene Transfer of Kynurenine Pathway in Xanthomonadales and Flavobacteriales [PDF]
Wanessa C Lima+2 more
openalex +1 more source
The fusion peptide LR27‐modified thermosensitive nanodelivery system exhibits both hair cell targeting and inner ear penetrating properties. This system sustainably and effectively delivers PTH1‐34 to the inner ear of a hearing loss mouse model via the synergistic effects of multiple peptides, achieving satisfactory hearing protection through ...
Jiawen Li+12 more
wiley +1 more source
Adaptive eukaryote‐to‐eukaryote lateral gene transfer: stress‐related genes of algal origin in the closest unicellular relatives of animals [PDF]
Aurora M. Nedelcu+3 more
openalex +1 more source
AAVR Expression is Essential for AAV Vector Transduction in Sensory Hair Cells
Decreased sensitivity to AAV vector transduction in the outer hair cells (OHCs) of adult mice is primarily attributed to reduction of AAVR (Kiaa0319l; Au040320). Knockout of AAVR reduces AAV vector transduction efficiency in both inner hair cells (IHCs) and OHCs in neonatal mice.
Fan Wu+8 more
wiley +1 more source
sEVs have a critical role in orchestrating interorgan crosstalk and mediating exercise‐induced therapeutic effects. Lin et al. demonstrates that sEVs miR‐17/20a‐5p mediates the muscle‐brain crosstalk and emphasizes the central role of mTOR signaling in executing molecular programs that can protect brain health in response to exercise. Abstract Physical
Huawei Lin+21 more
wiley +1 more source
Neutrality of Foreign Complex Subunits in an Experimental Model of Lateral Gene Transfer [PDF]
Alon Wellner, Uri Gophna
openalex +1 more source
EGR1 Promotes Craniofacial Bone Regeneration via Activation of ALPL⁺PDGFD⁺ Periosteal Stem Cells
ALPL+PDGFD+ (AP+) cells are distinct calvarial periosteal stem cells (PeSCs) with diminished postnatal activity. EGR1 drives PeSCs development via BMP signaling through its Znf2 domain and activates them via CTNNB1/WNT10B signaling through its Znf2/3 domains.
Yang Li+15 more
wiley +1 more source