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Additional file 8: B. pseudomallei genes clusters that contribute to biofilm development.
Genomic organization of the B. pseudomallei gene clusters that contribute to biofilm development as identified in this study.
In addition, new miRNA clusters that contribute to antiestrogen resistance were identified, and they warrant further investigation.
We identified un-described network clusters that contribute to antiestrogen resistance consisting of miR-146a, -27a, -145, -21, -155, -15a, -125b, and let-7s, in addition to the previously described miR-221/222.
This is incorrect, since even using the Cochrane authors' three "comparisons", there are 75 distinct clusters that contribute to the year 1 evidence for Group 1 versus Groups 2 and 3 in 1998, for instance).
The genome was predicted to encode 49 gene clusters that contribute to its secondary metabolome, significantly higher than that of A. sarcoides, also of the Helotiaceae [ 28], and in the same order of magnitude as that of B. cinerea, S. sclerotiorum, and other sequenced Leotiomycetes [ 27, 73].
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It is important to analyze and characterize the data processing performance for a given cloud cluster and to evaluate the performance bottlenecks in a cloud cluster that contribute to higher or lower computing processing time.
Those aspects of a cluster that contribute to their persistence also help to define clusters.
TRAT1 was selected as the most highly correlated gene from cluster 1 (Fig. 4), while FGL2 was selected as the second most highly correlated gene in cluster 2, and of more established immunologic interest than TC2N and less overt connection to immune response polarization than IFNG, the other two genes derived from cluster 2 that contribute to the 16-gene polarized immune response classifier.
To guide the design of helix mimics, we previously described analysis of protein complexes whose high-resolution structures have been deposited in the Protein Data Bank and cataloged interfacial helices that feature clusters of residues that contribute significantly to binding.
Generally, stiff substrate, cytoskeleton stiffening and bond cooperation through clustering are factors that contribute to the stability of focal adhesions.
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