2009
DOI: 10.1074/jbc.m109.007658
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Phosphorylation of Plant Translation Initiation Factors by CK2 Enhances the in Vitro Interaction of Multifactor Complex Components

Abstract: CK2 phosphorylates a wide variety of substrates, including translation initiation factors. A mass spectrometric approach was used to identify residues phosphorylated by CK2, which may regulate the activity of initiation factors during the translation initiation process in plants. CK2 in vitro phosphorylation sites were identified in wheat and Arabidopsis thaliana eIF2␣, eIF2␤, eIF5, and wheat eIF3c. Native wheat eIF5 and eIF2␣ were found to have phosphorylation sites that corresponded to some of the in vitro C… Show more

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Cited by 58 publications
(63 citation statements)
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“…These include translation initiation factors (e.g. eIF2␣, eIF2␤, eIF3c, eIF4B, and eIF5) (40,41), a chromatin remodeling enzyme (histone deacetylase 2B) (40), circadian clock components (e.g. CCA1 and LHY) (33,36,37,46), HMBG proteins from maize and Arabidopsis (47), abscisic acid responsive protein Rab17 in maize (48), and positively acting transcription factors (e.g.…”
Section: Discussionmentioning
confidence: 99%
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“…These include translation initiation factors (e.g. eIF2␣, eIF2␤, eIF3c, eIF4B, and eIF5) (40,41), a chromatin remodeling enzyme (histone deacetylase 2B) (40), circadian clock components (e.g. CCA1 and LHY) (33,36,37,46), HMBG proteins from maize and Arabidopsis (47), abscisic acid responsive protein Rab17 in maize (48), and positively acting transcription factors (e.g.…”
Section: Discussionmentioning
confidence: 99%
“…Effect of Different Subunit Composition on the Phosphorylation of PIF1-Because the Arabidopsis genome encodes four ␣ and four ␤ subunits of CK2 (39), we investigated whether different CK2 ␣ and ␤ subunit combinations have differential phosphorylation activity toward PIF1 as described (40,41). Results show that all the ␣␤ holoenzyme combinations had stronger activity than either of the two ␣ subunits alone.…”
Section: Pif1 Ismentioning
confidence: 99%
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“…In yeast, eIF3, eIF2, eIF5, and eIF1 are shown to bind to each other to form a multifactor complex (MFC). MFC formation was also observed in plants (Dennis et al 2009) and in humans (Sokabe et al 2012). This preassembled complex then binds to the 40S ribosome to form the 43S preinitiation complex (43S PIC) (Asano et al 2000).…”
Section: Introductionmentioning
confidence: 99%