Halopseudomonas species: Cultivation and molecular genetic tools.: This study describes the application of L-(+)-Arabinose in the cultivation of Halopseudomonas species, highlighting its role in microbial biotechnology and genetic tool development (Kruse et al., 2024).
easyPACId, a Simple Method for Induced Production, Isolation, Identification, and Testing of Natural Products from Proteobacteria.: Discusses a methodology that includes the use of L-(+)-Arabinose for inducing the production of natural products in Proteobacteria, demonstrating its value in microbial natural product research (Bode et al., 2023).
Biochem./physiol. Wirkung
L-Arabinose ist das natürlich vorkommende Isomer und ist ein Bestandteil von pflanzlichen Polysacchariden. Die meisten Bakterien enthalten ein induzierbares Arabinose Operon, das für eine Reihe von Enzymen und Transportern codiert, mithilfe derer L-Arabinose als einzige Kohlenstoffquelle der mikorbiellen Kultur ausreicht.
Sonstige Hinweise
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Rechtliche Hinweise
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This study is aimed at evaluating the effects, functions, and mechanism of HNF1α on hepatic glycolipid metabolism. In this study, free fatty acid- (FFA-) induced steatosis of hepatocyte liver cell LO2 was used as an in vitro model. The methods
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Infection and immunity, 82(10), 4390-4404 (2014-08-13)
Here, we constructed a Yersinia pseudotuberculosis mutant strain with arabinose-dependent regulated and delayed shutoff of crp expression (araC P(BAD) crp) and replacement of the msbB gene with the Escherichia coli msbB gene to attenuate it. Then, we inserted the asd
International journal of biological macromolecules, 79, 577-582 (2015-06-01)
Two polysaccharides (ULP1 and ULP2) were isolated through ultrasonic-assisted extraction from green seaweed Ulva lactuca L. which was collected from the South China Sea. The highest yield of 17.57% was obtained under the conditions of 2% NaOH, 90 °C, material/water
The Biochemical journal, 464(1), 13-22 (2014-08-29)
Ca2+ is a key intermediary in a variety of signalling pathways and undergoes dynamic changes in its cytoplasmic concentration due to release from stores within the endoplasmic reticulum (ER) and influx from the extracellular environment. In addition to regulating cytoplasmic
Unser Team von Wissenschaftlern verfügt über Erfahrung in allen Forschungsbereichen einschließlich Life Science, Materialwissenschaften, chemischer Synthese, Chromatographie, Analytik und vielen mehr..