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We briefly review these results, highlighting the similarities that strengthen common conclusions and differences that may be instructive with respect to methodologies and biological mechanisms.
Computational systems biology represents an interdisciplinary research style by bridging methodologies and biological problems and further strengthening their feedback interaction at a system-wide level.
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As this subject is an essential component of molecular science, this review deals with the most representative contributions in the field of chiral transition metal complexes, their synthetic methodology and biological applications.
Based on the essence of feasibility for the minimized methodology and biological functions inferred under similarity analyses, we further explored the rationale for the consistency and the diversity of the gene signatures.
Most importantly, these in silico approaches are specially suitable for evaluating small mutational effects that are impossible to be assessed via current experimental methodologies, and whose biological impacts might become evident only at the long evolutionary run.
Roughly, the research in computational systems biology field can be categorized into two classes: methodology development and biological application.
The importance of this methodology and the biological significance of the network proteins were validated by a functional study of three hubs that exhibited variable connectivity, namely, PPA1, SMNDC1, and PI15.
Many well-established molecular and biological methodologies including microarray, cloning, northern blotting, quantitative real-time-PCR (qRT-PCR), in situ hybridization (ISH), and next generation sequencing (NGS) are now being successfully utilized for miRNA research [12], [13], [14], [15], [16], [17].
Importantly, there are some discrepancies that highlight several limitations of the bioinformatics and biological methodologies.
The final topic covered at the meeting was the development and use of new technologies and methodologies to understand biological and biomedical questions.
Since developments in synthetic methodology tend to be incorporated into new library development, and improvements in analytical and biological methodology are applied to screening systems, chemical genetics research often encapsulates the best of both chemistry and biology.
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