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Human uterine leiomyomas (ULM) are characterized by dysregulation of a large number of genes and non-coding regulatory microRNAs. In order to identify microRNA::mRNA associations relevant to ULM pathogenesis, we examined global correlation patterns between the altered microRNA expression and the pre...
ORGANISM(S): Homo sapiens 
Data from ProteomeXchange, PXD ID: PXD002064. File: WT2.mgf. Published as part of PLoS One. 2015 Sep 24;10(9):e0139143 . From the Abstract: {{i}} Sinorhizobium meliloti, a facultative microsymbiont of alfalfa, should fine-tune its cellular processes to live saprophytically in soils characterized wi...
ORGANISM(S): Sinorhizobium_fredii_hh103, Sinorhizobium_meliloti_1021, Sinorhizobium_meliloti_ak83 
Right ventricular samples were serially acquired during surgical repair of ventricular septal defect. Expression profiling revealed three patterns of gene expression: (1) increased expression above control levels within one hour of cardioplegic arrest, with further amplification during early reperfu...
ORGANISM(S): Homo sapiens 
About a thousand genes in the human genome encode for membrane transporters. Among these, several solute carrier proteins (SLCs), representing the largest group of transporters, are still orphan and lack functional characterization. We reasoned that assessing genetic interactions among SLCs may be a...
2021-03-29 | MTBLS2205 | MetaboLights
Genetic variation is known to influence the amount of mRNA produced by a gene. Because molecular machines control mRNA levels of multiple genes, we expect genetic variation in components of these machines would influence multiple genes in a similar fashion. We show that this assumption is correct by...
ORGANISM(S): Mus musculus 
Genetic variation is known to influence the amount of mRNA produced by a gene. Because molecular machines control mRNA levels of multiple genes, we expect genetic variation in components of these machines would influence multiple genes in a similar fashion. We show that this assumption is correct by...
ORGANISM(S): Mus musculus 
A systems level analysis of Chromochloris zofingiensis during copper, iron, and zinc deficiencies when grown photoautotrophically and mixotrophically in a revised TP medium with special K mineral nutrients.
ORGANISM(S): Chromochloris Zofingiensis (ncbitaxon:31302) 
2024-11-08 | MSV000096362 | MassIVE
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