Results 181 to 190 of about 2,217,916 (339)
Studies on the Induction and Repression of Enzymes in Rat Liver
H.C. Pitot, Carl Peraino
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First Enzyme of Histidine Biosynthesis and Repression Control of Histidyl-Transfer Ribonucleic Acid Synthetase of Salmonella typhimurium [PDF]
Han Ma, L. S. Williams
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Manipulating the Light Systemic Signal HY5 Greatly Improve Fruit Quality in Tomato
This study establishes that HY5, activated by low‐dose light, acts as a systemic signal to enhance tomato fruit quality by directly promoting carotenoid synthesis and sugar metabolism. These findings demonstrate HY5's mobility from leaves to fruits and its application potential through nighttime LED lighting, offering a practical strategy for crop ...
Jiachun Wang+7 more
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Studies on the Induction and Repression of Enzymes in Rat Liver
J P Jost+2 more
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Derepression and repression of the histidine operon: role of the feedback site of the first enzyme [PDF]
Vanesa Fernández‐Sáiz+4 more
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Synthetic gene circuits regulated by bezafibrate are developed to express tumor antigens and PD‐L1 nanobody (PD‐L1nb), enhancing cancer immunotherapy. Delivered via HEK293T cells, ESCs, or directly injected the plasmids containing the circuit into the tumor, the circuits reduce tumor growth, boost CD8+ T cells, and minimize T cell exhaustion.
Meiling Jin+3 more
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A role for FXR and human FGF-19 in the repression of paraoxonase-1 gene expression by bile acids
Paraoxonase-1 (PON1), an enzyme that metabolizes organophosphate insecticides, is secreted by the liver and transported in the blood complexed to HDL.
Diana M. Shih+5 more
doaj
Transient repression of catabolite-sensitive enzyme synthesis elicited by 2,4-dinitrophenol [PDF]
R Oki
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SMC4 Promotes Prostate Cancer Cell Proliferation and Metastasis via the Rheb/mTOR Pathway
Structural maintenance of chromosome protein 4 (SMC4) has been implicated in prostate cancer metastasis. Knockdown of SMC4 in RM1‐LM cells significantly attenuates proliferation, migration, and lung metastasis in vivo. Furthermore, SMC4 interacts with GLUT1 (Slc2a1), thereby enhancing glycolysis, ATP production, and activation of the Rheb/mTOR pathway.
Wei Zhang+9 more
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