Results 151 to 160 of about 225,378 (345)
RSPO2 and GDF9:BMP15 heterodimers—core components of oocyte‐secreted factors (OSFs)—coordinate to shape the molecular architecture of preantral granulosa cells via gene‐specific synergistic and antagonistic regulation, mediated through CTNNB1–SMAD2 signaling crosstalk.
Yingmei Wang+7 more
wiley +1 more source
Tannic acid-stained microtubules with 12, 13, and 15 protofilaments [PDF]
P R Burton, RE Hinkley, G B Pierson
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ATF3 Deficiency Exacerbates Ageing‐Induced Atherosclerosis and Clinical Intervention Strategy
Targeting ATF3 with terazosin to against VSMC Senescence and atherosclerosis. TZ reduces the binding affinity of YTHDF2 to Atf3 mRNA, while enhancing mRNA stability. ATF3 promotes Atg7 transcription, enhancing autophagy. ATG7 binds to ATF3 in the cytoplasm, facilitating ATF3 translocation to the nucleus and establishing positive feedback. By modulating
Hao Nie+11 more
wiley +1 more source
THE “9 + 1” PATTERN OF MICROTUBULES IN SPERMATOZOA OF Mesostoma (PLATYHELMINTHES, TURBELLARIA)
Catherine Henley+3 more
openalex +1 more source
The premature aging‐related progerin leads to defective nuclear morphology and is associated with disrupted molecular coupling between the extranuclear cytoskeleton and lamin‐associated nuclear envelope. It is discovered that progerin expression reduces nuclear tension, forms nuclear wrinkling, and enhances chromatin dynamics, thereby regulating ...
Ji‐Eun Park+9 more
wiley +1 more source
ATP-INDUCED SLIDING OF MICROTUBULES IN BULL SPERM FLAGELLA [PDF]
Keith Summers
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The release of COL6A3 by fibroblasts is sensed by the CD44 receptor on melanocytes, activating glutathione (GSH) metabolism and increasing melanocyte survival during skin organoid culture. SEMA3C released by bulge cells binds to the NRP1 receptor on melanocytes, regulating microtubule stability and promoting melanocyte recruitment and function during ...
Tingting Li+17 more
wiley +1 more source
REGULATION OF MICROTUBULES IN TETRAHYMENA [PDF]
Norman E. Williams, E. Marlo Nelsen
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Cisplatin causes reactive oxygen species accumulation, leading to apoptosis and inflammation in cochlear hair cells. Small extracellular vesicles primarily derived from the damaged hair cells likely contribute to cisplatin‐induced ototoxicity, carrying a variety of microRNAs and proteins.
Jingru Ai+14 more
wiley +1 more source