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We checked the index and query distributions and obtained the results shown in Figure 4. Basic analysis revealed that the query is mainly concentrated in less than 2000 Dalton; that is, 97% of total queries is within this range.
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Basic functional keyword enrichment analysis revealed that many of the genes regulated by PTPN11, SOS1, and SHOC2 mutations are themselves involved in signal transduction and control of transcription.
Our analysis revealed that undirected networks are similar at the basic three and four nodes, while the analysis of directed networks revealed the distinction between networks of different disciplines.
Structural analysis revealed that many highly reactive sites exist within clusters of basic residues, whereas lysines that show low reactivity are engaged in strong attractive electrostatic interactions with acidic residues.
Mutational analysis revealed that membrane recruitment of SLP65 requires both the N-terminal basic region and the C-terminal SH2 domain (Kohler et al, 2005; Abudula et al, 2007).
Structural analysis revealed that Pat-C folds into an α α superhelix, exposing conserved and basic residues on one side of the domain.
GO analysis revealed that the annotated unigenes were mainly related to genes involved in basic biological processes such as cellular process (25.5%), metabolic process (19.1%) and biological regulation (10.8%).
NMR structure analysis revealed that ZF1 4 had a similar structure to GLI ZF, and the basic side chains of the NLS clustered together in two regions on the protein surface, similar to classical bipartite NLSs.
In silico restriction analysis revealed that its central part consists of 1866 bp-long HORs (11 times the basic 171-bp repeats), whilst the two sides contain more divergent DNA sequences.
The current PPI analysis revealed that components of the mentalising network also show functional connectivity during social relative to basic emotions.
The analysis revealed that the change of PFC-SMA coupling was best explained by performance changes in the basic motor condition, i.e. Tapping [ F 1,11) = 18.7; r = 0.81; P < 0.05, Bonferroni-corrected, Fig. 5B].
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com