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The main features of this detailed kinetic mechanism, which includes both high and low temperature reaction pathways, are presented and discussed with special emphasis on the main classes of reactions involved in alkene oxidation.
In this perspective review, the general design rules of in vitro synthetic pathways are presented with eight supporting examples: hydrogen, n-butanol, isobutanol, electricity, starch, lactate,1,3-propanediol, and poly-3-hydroxylbutyrate.
The main features of these pathways are presented in Supplemental Figures S1, S2 and S3.
A full list of these pathways is found in Tables S2, S3 and S4, while selected pathways are presented in Figure 5B.
The key novel synthetic pathways are presented in Figure 1.
The purine metabolism pathways are presented in Fig. 1.
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These pathways were presented according to the Kyoto Encyclopedia of Genes and Genomes (KEGG) database (http://www.genome.jp/kegg/).jp/kegg/
All the values of the protein-abundance biases in these 18 pathways were presented in Supplementary Figure S4.
A list of significantly enriched canonical pathways is presented in Table 3.
The distribution of the mapped KEGG pathways is presented in Figure 6.
A more complete list of associated genes involved in interferon-related pathways is presented in Table 1.
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