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CarD is an essential mycobacterial protein that we had previously shown to bind the RNA polymerase (RNAP) and affect the transcriptional profile of M. smegmatis and Mycobacterium tuberculosis. For this reason, we suspected that CarD was directly regulating transcriptional complexes but we did not kn...
ORGANISM(S): Mycobacterium smegmatis 
RNA was sequenced from commercially grown greenhouse minitubers treated with 10 ug of 1-(alpha-ethylbenzy)-3-nitroquanidine (NG) in DMSO and followed for four, and seven days post treatment. Control tubers were injected with DMSO alone. Sequence reads were mapped to the potato genome (PGSC_DM_v3_2.1...
ORGANISM(S): Solanum tuberosum 
RNA was sequenced from meristems excised from dormant and non-dormant potato tubers harvested from four different harvest years. Expression based on mapped RNA-sequences was accomplished from excised meristems from fall harvested (dormant tubers) and the same harvested tubers were stored under stand...
ORGANISM(S): Solanum tuberosum 
Nostoc punctiforme is a filamentous cyanobacterium capable if differentiating normal vegetative cells into nitrogen fixing heterocysts and spore-like akinetes. Here the effects of a sigma factor (sigG) mutation on the transcriptome was analyzed under 1) normal vegetative growth, and 2) following a...
ORGANISM(S): Nostoc punctiforme 
Determing the gene network regulated by Pitx2 in during forelimb muscle development of mouse embryos at E12.5. Lbx1 is coexpressed in Pitx2+ cells during forelimb development, thus Pitx2-LacZ and Lbx1-EGFP+ mice were cross bred to allow us to purify Lbx1-EGFP+|Pitx2 -wild type, het, or null cells b...
ORGANISM(S): Mus musculus 
Mutations in genes encoding components of the sarcolemmal dystrophin-glycoprotein complex (DGC) are responsible for a large number of muscular dystrophies. As such, molecular dissection of the DGC is expected to both reveal pathological mechanisms, and provides a biological framework for validating ...
ORGANISM(S): Mus musculus (Mouse) 
2016-04-22 | PXD004020 | Pride
Mutations in genes encoding components of the sarcolemmal dystrophin-glycoprotein complex (DGC) are responsible for a large number of muscular dystrophies. As such, molecular dissection of the DGC is expected to both reveal pathological mechanisms, and provides a biological framework for validating ...
ORGANISM(S): Mus musculus (Mouse) 
2020-03-12 | PXD002846 | Pride
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