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PMID: 11289600 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S.

Heat-stress induced synthesis of chloroplast protein synthesis elongation factor (EF-Tu) in a heat-tolerant maize line.

Planta ·Vol. 212 ·No. 3 ·2001-02-00 ·Pages 359-66

Bhadula SK, Elthon TE, Habben JE, Helentjaris TG, Jiao S, Ristic Z

Abstract

A heat-tolerant maize (Zea mays L.) line, ZPBL 1304, synthesizes a unique set of five heat-shock polypeptides of 45 kDa. Previous studies suggested that these polypeptides might play a role in the development of thermotolerance in maize (Ristic et al., 1996, J. Plant Physiol. 149:424-432; Ristic et al., 1998, J. Plant Physiol. 153:497-505). In the present study, we isolated these polypeptides, sequenced them, and investigated their subcellular distribution and origin. Of the five polypeptides of 45 kDa, three polypeptides, including the two most abundant ones, yielded amino acid sequences similar to the chloroplast and bacterial protein synthesis elongation factor (EF-Tu). This was further confirmed using an antibody raised against maize EF-Tu, which showed a very strong reaction with the 45-kDa heatshock protein(s). Studies on subcellular distribution and origin revealed that the 45-kDa polypeptides were localized to the chloroplasts, and were likely of nuclear origin. A full-length maize EF-Tu cDNA (Zmeftu1), previously isolated from the B73 line of maize, was used as a probe for northern blot analysis of RNA extracted from the ZPBL 1304 maize line (the nucleotide and deduced amino acid sequences of Zmeftu1 are 88% identical to the rice EF-Tu sequence). Northern blots showed a 1.85-fold increase in steady-state levels of EF-Tu mRNA during heat stress. An increase in EF-Tu transcript levels during heat stress was accompanied by increased levels of the EF-Tu protein. Isolated chloroplasts from heat-stressed plants also had higher levels of EF-Tu as compared to control chloroplasts. The maize EF-Tu polypeptides showed > 80% sequence similarity with the bacterial EF-Tu, which has recently been shown to function as a molecular chaperone and to play a role in the protection of other proteins from thermal denaturation (Caldas et al., 1998, J. Biol. Chem. 273:11478-11482). It is hypothesized that chloroplast EF-Tu of the ZPBL 1304 maize line plays an important role in the development of thermotolerance.

MeSH Terms
Amino Acid Sequence Autoradiography Base Sequence Blotting, Northern Blotting, Western Chloroplasts/metabolism,ultrastructure Heat Stress Disorders/metabolism Heat-Shock Proteins/metabolism In Vitro Techniques Methionine/pharmacology Molecular Sequence Data Peptide Elongation Factor Tu/biosynthesis,metabolism Plant Leaves/metabolism RNA, Messenger/metabolism Zea mays/metabolism
Chemicals
Heat-Shock Proteins RNA, Messenger Methionine Peptide Elongation Factor Tu
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Bhadula S K
Department of Biology, University of South Dakota, Vermillion 57069, USA.
Elthon T E
Habben J E
Helentjaris T G
Jiao S
Ristic Z
Article Info
Journal
Planta
Abbr.
Planta
ISSN
0032-0935
Published
2001-02-00
Pages
359-66
Language
English
Region
Germany
NLM ID
1250576
Subset
IM
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