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The very broad expression pattern of the murine DSCR1 genes is similar to that of the human genes.
These results provided us with an important insight into how mechanical stimulation altered the fate of cells: the very broad expression domain of runx2 indicated that even cells located at a considerable distance from the implant could sense the physical stimulus.
Furthermore, we observed that most of the genes had very broad expression spectra.
After integration of the two data sets, we observed that most of the genes had very broad expression spectra.
This isoform is expressed mainly in the brain, skeletal muscle, skin, adipose tissue, gut, placenta and has a very broad expression pattern.
Nevertheless, the expression breadth of HK genes defined in 18 tissues did show very broad expression in 51 tissues — peaked at about value 42.
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In contrast, the tissue distribution of human CYP1A1 gene expression is very broad and its expression is strongly induced by exogenous compounds, indicating CYP1A2 rather than CYP1A1 is a major hepatic CYP1A gene in humans.
First, they show a very broad pattern of expression, including numerous tissues and organs [3], [6], [7], [8], whereas α, β and γ mRNAs expression is mainly restricted to epidermis.
As reflected by the total counts of miRNA-derived sequence reads, known miRNAs had a very broad range of expression which varied from thousands sequence reads for the most abundant miRNAs such as ubiquitous let-7 miRNA family, bta-mir-21, and bta-mir-140 to zero for the approximately one quarter of known cow miRNAs that have not been detected in our small RNA libraries (Supplemental Table S1).
In human tissues, LMO4 has a very broad spectrum of expression (14).
Nevertheless, when gfp was inserted into either of the unique starting exons for atf-7, the same, strong, very broad specificity, reporter expression pattern, peaking in the L1 stage, was observed (WBIDs Expr9790/9808).
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CEO of Professional Science Editing for Scientists @ prosciediting.com