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A substantial body of research has elucidated the major molecular processes that regulate the development of eosinophilic inflammation.
In wheat, the major molecular processes were binding and catalytic activities, similarly found in other Poaceae species.
In order to identify the major molecular processes involved in cytokine-induced altered CEC phenotype, we analyzed the changes in gene expression in hCMEC/D3 cells after stimulation with TNFα and IFNγ for 24 h using mRNA array.
Significantly, the establishment of a mitotic microtubule modulator such as paclitaxel and actin disrupter such as Cuc IIa will have far reaching implications in future oncologic treatments, as they can potentially suppress two distinct major molecular processes of cancer cell cycle to combat resistances.
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This recapitulates the salient phenotype of unc-51−/− mutants, and argues that defective kinesin-mediated transport is the major molecular process that underlies the developmental defects in the unc-51 mutants.
Despite significant improvements in our understanding of the pathogenesis of HCC over the past few decades, we still do not have a comprehensive understanding of the major molecular pathogenic processes involved in liver carcinogenesis.
Although it may be coincidental, acetylation has recently been identified as a mechanism regulating tau turnover (32), implying that complex interplay between different post-translational modifications represents a common mechanism neurons uses to fine-tune major classes of molecular processes.
Over the past several years, many TSGs have been found to be epigenetically inactivated in gastric cancer, indicating that epigenetic silencing of TSGs is one of the major molecular alterations in the process of gastric carcinogenesis (Lee et al, 2002; To et al, 2002; Choi and Wu, 2005; Chan and Rashid, 2006; Sato and Meltzer, 2006; Cheng et al, 2007).
Although numerous studies in rodent models have provided major molecular insights into these cellular processes, investigations performed directly on human cells are of great significance for developing effective therapeutic strategies.
However, while RNAi is a very powerful tool to identify genes involved in a specific biological process, the placement of hits in their functional and spatiotemporal context in the underlying molecular processes remains a major challenge [ 20, 21].
Following the sequencing of the A. apis genome in 2006 [ 7], our comprehensive, transcriptome-informed gene annotations constitute a major step forward in delineating the molecular processes underlying its life history, including complex interactions with its host.
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