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Gene Ontology analysis using BLAST2GO revealed P. carinii dedicated most of its transcripts to cellular and physiological processes (∼80%), molecular binding and catalytic activities (∼70%), and were primarily derived from cell and organellar compartments (∼80%).
In the category of molecular function, unigenes with "binding" and "catalytic" activities were the largest groups.
In the category of "Molecular Function," "binding" and "catalytic" activities were the largest group.
In wheat, the major molecular processes were binding and catalytic activities, similarly found in other Poaceae species.
The RNA binding and catalytic activities of endogenous Ago2 were tested in 293TRex cells treated with ATA or oxidopamine HCL.
Similarly, binding and catalytic activities were most represented among various molecular functions; metabolic process and cellular process were most represented in the biological process categories (Fig. 2).
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However, a higher percentage of ESTs having transporter, binding, and catalytic activity GO function may suggest active growth of non-stressed leaf tissue.
Enriched gene ontology (GO) categories included nucleotide binding and catalytic activity (Supplementary Table 11).
For the Molecular function category, the most highly represented genes were associated with "binding" and "catalytic activity".
The primary GO terms clustered were cellular process, single-organism process, and metabolic process in 'biological process'; cells, cell parts, and organelles in 'cellular component'; and binding and catalytic activity in 'molecular function' (Fig. S3).
DEGs in the colonic mucosa of the high and low FCR groups were functionally annotated, and were found to be related to cellular processes, single-organism processes, metabolic processes, cells, cell parts, organelles, binding, and catalytic activity (Fig. S2).
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binding and neutralizing activities
binding and severing activities
binding and agonist activities
binding and biological activities
binding and catalytic antibodies
binding and catalytic abilities
binding and functional activities
binding and inhibitory activities
binding and endocytic activities
binding and catalytic properties
binding and enzymatic activities
binding and catalytic mechanisms
binding and catalytic residues
binding and catalytic loops
binding and RNase activities
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