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We hypothesized that the genome segments of cultivated barley should show certain similarity with its ancestral wild barley. Instead of whole genome sequences, we employed RNA-Seq to investigated the genomic origin of modern cultivated barley using some representative wild barley genotypes from the ...
ORGANISM(S): Hordeum vulgare subsp. spontaneum 
Immunodeficiency, Centromeric Instability, and Facial Anomalies Type I (ICF1) Syndrome is a rare genetic disease caused by mutations in DNMT3B, a de novo DNA methyltransferase. However, the molecular basis of how DNMT3B-deficiency leads to ICF1 pathogenesis is unclear. Induced pluripotent stem cell ...
ORGANISM(S): Homo sapiens 
Transcriptomic profiling of gene expression in EA 2018 relative to that of ATCC824 revealed several key genes related to solvent formation. For example, spo0A and adhEII have higher expression level, and most of the acid formation related genes have lower expression level in EA 2018. Cells for RNA ...
ORGANISM(S): Clostridium acetobutylicum EA 2018 
Using the paradigm of in vitro differentiation of hESCs/iPSCs into retinal pigment epithelial (RPE) cells, we have recently profiled mRNA and miRNA transcriptomes to define a set of RPE mRNA and miRNA signature genes implicated in directed RPE differentiation. In this study, in order to understand t...
ORGANISM(S): Homo sapiens 
Down syndrome (DS) is caused by triplication of Human chromosome 21 (Hsa21) and associated with an array of deleterious phenotypes, including mental retardation, heart defects and immunodeficiency. Spatio-temporal patterns of genome-wide expression are critical to the understanding of DS. We used a ...
ORGANISM(S): Homo sapiens 
Halomonas species are renowned for their production of organic compatible solutes, particularly ectoine. However, the identification of key regulatory genes governing ectoine production in Halomonas remains limited. In this study, we conducted a combined transcriptome-proteome analysis to unveil add...
ORGANISM(S): Halomonas 
2024-11-02 | PXD057477 |
We analyzed surgically resected formalin-fixed, paraffin-embedded (FFPE) SCLC samples by proteomic profiling and stratified SCLC into three subtypes (S-I, S-II, and S-III) with distinct clinical outcomes and chemotherapy responses.
ORGANISM(S): Homo Sapiens 
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