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eIFiso4G Augments the Synthesis of Specific Plant Proteins Involved in Normal Chloroplast Function.

Plant Physiol.. 2019; 
LellisAndrew D,PatrickRyan M,MayberryLaura K,LorenceArgelia,CampbellZachary C,RooseJohnna L,FrankelLaurie K,BrickerTerry M,HellmannHanjo A,MayberryRoderick W,ZavalaAna Solis,ChoyGrace S,WylieDennis C,Abdul-MoheethMustafa,MasoodAdeeb,PraterAmy G,Van HoornHailey E,ColeNicola A,BrowningKar
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Catalog Antibody Membranes were probed with primary antibody (1/2,000 in PBST containing 5% [w/v] dry milk) for 1 h at room temperature followed by 3–4 washes with PBST and followed by secondary anti-rabbit HRP, anti-mouse HRP, or anti-goat HRP (Kendrick Labs) at 1:20,000 (in PBST containing 5% [w/v] dry milk) for 1 h and washed 3–4 times with PBST before visualization with chemiluminescent substrate (Genscript or Agrisera) using a Chem-Doc (Bio-Rad). Get A Quote

摘要

The plant-specific translation initiation complex eIFiso4F is encoded by three genes in Arabidopsis ()-genes encoding the cap binding protein eIFiso4E () and two isoforms of the large subunit scaffolding protein eIFiso4G ( and ). To quantitate phenotypic changes, a phenomics platform was used to grow wild-type and mutant plants (, , , , and []) under various light conditions. Mutants lacking both eIFiso4G isoforms showed the most obvious phenotypic differences from the wild type. Two-dimensional differential gel electrophoresis and mass spectrometry were used to identify changes in protein levels in plants lacking eIFiso4G. Four of the proteins identified as measurably decreased and validated by immu... More

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