Nath S (2002) The molecular mechanism of ATP synthesis by F1F0-ATP synthase: a scrutiny of the major possibilities. Adv Biochem Eng Biotechnol 74: 65-98.Nath, S., 2002. The molecular mechanism of ATP synthesis by F1F0-ATP synthase: a scrutiny of the major possibilities. Adv. Biochem. ...
The site of reduction is uncertain and could be either in the macrophage or in the parasite. Resistance could arise if the reductase activity were lost and this idea has received support from the analysis of Pentostam-resistant L. donovani amastigote cells that lost their reductase activity (...
OXPHOS is the process by which complexes I – V on the inner mitochondrial membrane generate a proton gradient through the electron transport chain (ETC) to drive ATP synthesis [8]. ROS, as byproducts of OXPHOS, play a role in cellular signal transduction at normal levels; however, elevated ...
Transport of S-adenosylmethionine in isolated rat liver mitochondria. Mitochondria do not have the enzyme, methionine adenosyltransferase (ATP: L-methionine S-adenosyltransferase, EC 2.5.1.6), necessary for the biosynthesis o... DW Horne,RS Holloway,C Wagner - 《Archives of Biochemistry & Biophysics...
*Eisai is mainly responsible for non-clinical studies and the provision of the investigational drug.DNDi・Mycetoma Research Center of the University of KhartoumSudanPⅡb/Ⅲ SJ733 Antimalarial agent / ATP4 inhibitor Co-development (University of Kentucky) Oral ...
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We use essential cookies to make sure the site can function. We also use optional cookies for advertising, personalisation of content, usage analysis, and social media. By accepting optional cookies, you consent to the processing of your personal data - including transfers to third parties. Some...
Denitrification, a Novel Type of Respiratory Metabolism in Fungal Mitochondrion Subcellular localization and coupling to ATP synthesis were investigated with respect to the denitrifying systems of two fungi, Fusarium oxysporum and Cyli... M Kobayashi,Y Matsuo,A Takimoto,... - 《Journal of Biological...
[133,134], extracellular ATP [134], and circulating cell-free mitochondrial DNA [135]. Other inflammation-inducing factors include oxidative and nitrosative stress, psychosocial stress, poor diet, physical inactivity, obesity, smoking, and altered gut permeability [136]. Peripheral immune cells may ...
Selenophosphate synthetase (EC 2.7.9.3), the product of the selD gene, produces the biologically active selenium donor compound, monoselenophosphate, from ATP and selenide, for the synthesis of selenocysteine. The kinetoplastid Leishmania major and Trypanosoma brucei selD genes were cloned and the SEL...