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Notably, we found that genes with higher GC content in their promoter sequences have higher number of miRNA sites in their 3′ UTR.
It can be observed that all of the efficiently spliced sequences have higher base-pair probabilities than the poorly spliced sequences (r = -0.92).
However, even though our collection may contain false positives, when considered collectively our study indicates that these trans-NAT sequences have higher similarity to their parental genes in the region 50 nt upstream their 3' ends.
The promoter regions had distinctly higher GC content (∼52.21 57.29%), agreeing with the observation that conserved functional sequences have higher GC content compared with the entire genome or intronic regions of the human genome (Pozzoli et al. 2008).
Based on this matrix, a hierarchical clustering was conducted by the program AGNES (agglomerative hierarchical clustering algorithms) where proteins are clustered closer if their protein sequences have higher similarity (Materials and Methods) [ 27].
We used MRI for individual grey matter segmentation since classical T1-weighted MRI sequences have higher resolution than PET images and since most patients nowadays undergo clinical MRI scans for diagnostic purposes.
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Foreman sequences are widely used as test sequences and Stefan sequences have high motion activities, while Mobile sequences are complex.
All these sequences have high-definition resolution (1,920 × 1,080), with no compression, and available in side-by-side formats as half-resolution.
Our analysis of the novel L. calcarifer β2M gene recovered in this study indicates that, overall, fish β2M sequences have high sequence similarity and share many conserved features with published sequences from mammals and birds.
Since STAP predicted that 13% (for Bcd) and 22% (for Kr) of these random sequences have high binding affinities (Table 2), the specificities of STAP predictions were no smaller than 87% and 78%, respectively.
Overall, the six kinetoplastid MTM sequences have high similarity to human MTMs across the length of the phosphatase domain.
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