Comparative proteomics analysis of root and nodule mitochondria of soybean
Abstract Legumes perform symbiotic nitrogen fixation through rhizobial bacteroids housed in specialised root nodules. The biochemical process is energy‐intensive and consumes a huge carbon source to generate sufficient reducing power. To maintain the symbiosis, malate is supplied by legume nodules to bacteroids as their major carbon and energy source ...
Wai‐Ching Sin +4 more
wiley +1 more source
Rapid Analysis of NAD and Other Phosphorylated Metabolites in Complex Biological Samples by Hydrophilic Interaction Liquid Chromatography Coupled with Tandem Mass Spectrometry. [PDF]
Pravdova A +11 more
europepmc +1 more source
Tolerance to Phosphorus Deficiency Improves Seed Phytic Acid‐to‐Iron Molar Ratios in Common Bean
ABSTRACT Although significant advances have been achieved in the biofortification of common beans to overcome deficiencies in Zinc (Zn) and iron (Fe), the mechanisms involved remain poorly understood. We thus explored the relationships between phosphorus nutrition and Zn and Fe accumulation in four bean genotypes (Edar, Nizok, Colorado and Chimbolos ...
Barbara Karpinska, Christine H. Foyer
wiley +1 more source
β-Lapachone-Induced Oxidative Stress Causes PARP-Dependent NAD<sup>+</sup>-Depletion that Affects the Energy Metabolism of Cultured Primary Rat Astrocytes. [PDF]
Willker JE, Dringen R.
europepmc +1 more source
Immune dysregulation in mania: A proof‐of‐concept platelet proteomics study
Aims Bipolar disorder (BD) is a major psychiatric condition with a multifaceted and largely unknown pathophysiology. Mania, the defining feature of BD, remains underinvestigated. Proteomics offers a powerful, data‐driven, unbiased approach to uncover biological alterations.
Paola Magioncalda +6 more
wiley +1 more source
The Substrate Versatility of Δ<sup>1</sup>-Pyrroline-5-carboxylate Reductase (ProC) from <i>Escherichia coli</i>. [PDF]
Polverini E +4 more
europepmc +1 more source
Metabolic design considerations for recycling of respiratory CO2 in leaves
SUMMARY Net carbon gain in plants is significantly reduced by the loss of assimilated carbon due to respiration and other metabolism in heterotrophic tissues. Avoiding this loss is difficult due to the essential nature of the metabolic processes involved but it could be possible to engineer metabolism to reuse the generated CO2.
Corinna Hartinger +2 more
wiley +1 more source
Monooxygenase-dehydrogenase cascade for sustained enzymatic remediation of TMA in salmon protein hydrolysates. [PDF]
Ree R +7 more
europepmc +1 more source
Rapid CO2 effects on protein‐related metabolism during photosynthetic gas exchange
SUMMARY It is common practice to vary atmospheric CO2 mole fraction (Ca) during gas exchange experiments to manipulate photorespiration and explore photosynthetic properties such as maximum carboxylation velocity. In doing so, it is assumed that changing Ca essentially alters the carboxylation‐to‐oxygenation ratio, with negligible effects on other ...
Corentin Dourmap +5 more
wiley +1 more source
Sulfide dynamics at the gut-microbiota interface: diet, oxygen and redox interplay. [PDF]
Kumar R, Banerjee R.
europepmc +1 more source

