Localization of small heat shock proteins to the higher plant endomembrane system

Author:

Helm K W1,LaFayette P R1,Nagao R T1,Key J L1,Vierling E1

Affiliation:

1. Department of Biochemistry, University of Arizona, Tucson 85721.

Abstract

Three related gene families of low-molecular-weight (LMW) heat shock proteins (HSPs) have been characterized in plants. We describe a fourth LMW HSP family, represented by PsHSP22.7 from Pisum sativum and GmHSP22.0 from Glycine max, and demonstrate that this family of proteins is endomembrane localized. PsHSP22.7 and GmHSP22.0 are 76.7% identical at the amino acid level. Both proteins have amino-terminal signal peptides and carboxyl-terminal sequences characteristic of endoplasmic reticulum (ER) retention signals. The two proteins closely resemble class I cytoplasmic LMW HSPs, suggesting that they evolved from the cytoplasmic proteins through the addition of the signal peptide and ER retention motif. The endomembrane localization of these proteins was confirmed by cell fractionation. The polypeptide product of PsHSP22.7 mRNA was processed to a smaller-M(r) form by canine pancreatic microsomes; in vivo, GmHSP22.0 polysomal mRNA was found to be predominantly membrane bound. In vitro-processed PsHSP22.7 corresponded in mass and pI to one of two proteins detected in ER fractions from heat-stressed plants by using anti-PsHSP22.7 antibodies. Like other LMW HSPs, PsHSP22.7 was observed in higher-molecular-weight structures with apparent masses of between 80 and 240 kDa. The results reported here indicate that members of this new class of LMW HSPs are most likely resident ER proteins and may be similar in function to related LMW HSPs in the cytoplasm. Along with the HSP90 and HSP70 classes of HSPs, this is the third category of HSPs localized to the ER.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

Reference51 articles.

1. Quantitative isolation of undegraded polysomes from aged pea tissue in the absence of contaminants and artifacts;Abe S.;Plant Cell Physiol.,1985

2. Molecular weight estimations of proteins by electrophoresis in polyacrylamide gels of graded porosity;Anderson L. O.;FEBS Lett.,1972

3. Variants of the carboxyl-terminal KDEL sequence direct intracellular retention;Andres D. A.;J. Biol. Chem.,1990

4. Characterization and purification of the small 28,000-Dalton mammalian heat shock protein;Arrigo A.;J. Biol. Chem.,1987

5. Polyadenylated RNA sequences which are reduced in concentration following auxin treatment of soybean hypocotyls;Baulcomb D.;J. Biol. Chem.,1980

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