Sort   by:  
 Page size 
The seed coat of black (iRT) soybean with the dominant R allele begins to accumulate cyanic pigments at the transition stage of seed development (300 – 400 mg fresh seed weight), whereas the brown (irT) nearly-isogenic seed coat with the recessive r allele lacks cyanic pigments at all stages of seed...
ORGANISM(S): Glycine max 

The effects of iron deficiency (ID) during infancy extend beyond the hematologic compartment and include short- and long-term adverse effects on many tissues including the brain. However, sensitive biomarkers of iron-dependent brain health are lacking in humans. To determine whether serum and cer...

2022-07-12 | MTBLS3388 | MetaboLights
Control versus Casz1 BioID on mouse primary retinal cells. BioID constructs were introduced via nucleofection. Cultured cells were harvested, nuclei extracted, and BioID was performed as per standard procedures.
ORGANISM(S): Mus Musculus (ncbitaxon:10090) 
2020-06-17 | MSV000085598 | MassIVE
Mechanisms governing Mycobacterium tuberculosis acid-fastness and its capacity to induce long-term infections remain unknown. Serine/Threonine phosphorylation represents an emerging theme allowing mycobacteria to adapt their cell envelope structure/composition in response to environmental changes. W...
ORGANISM(S): Mycobacterium tuberculosis 
The short chain fatty acid (SCFA) receptor (free fatty acid receptor-3; FFAR3) is expressed in pancreatic beta cells; however, its role in insulin secretion is not clearly defined. Here, we examined the role of FFAR3 in insulin secretion. Using islets from global knockout FFAR3 (Ffar3-/-) mice, we e...
ORGANISM(S): Mus musculus 
We profiled the skeletal muscle transcriptome between wild type and αB-crystallin/HspB2 knock mice exposed to normal chow and high fat diets to examine the role of αB-crystallin/HspB2 in diet induced obesity. Combined with metabolic profiling of the mice, these data reveal that αB-crystallin/HspB2...
ORGANISM(S): Mus musculus 
We developed a new approach called antibody detection of translocations (ADOT) which combines a transcriptional microarray-based approach with a novel antibody-based detection method to detect translocations in cancer. ADOT allows for the accurate and sensitive identification of translocations and p...
ORGANISM(S): Homo sapiens 
Sort   by:  
 Page size