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Arabidopsis Profilin Isoforms, PRF1 and PRF2Show Distinctive Binding Activities and Subcellular Distributions
Authors:Feng Wang,Yanping Jing,Zhen Wang,Tonglin Mao,Jozef &#  amaj,Ming Yuan , Haiyun Ren
Affiliation:( State Key Laboratory of Plant Physiology and Biochemistry, China Agricultural University;, Beijing 100094, China;College of Life Sciences, Beijing Normal University;, Beijing 100875, China;College of Biological Sciences and Biotechnology, Beijing Forestry University;, Beijing 100083, China;Institute of Cellular and Molecular Botany, Rheinische Friedrich-Wilhelms- University Bonn, Department of Plant Cell Biology;, Kirschallee 1, D-53115 Bonn, Germany;Institute of Plant Genetics and Biotechnology, Slovak Academy of Sciences;, Akademicka 2, SK-95007, Nitra, Slovak Republic)
Abstract:Profilin is an actin-binding protein that shows complex effects on the dynamics of the actin cytoskeleton. There are five profilin isoforms in Arabidopsis thaliana L. However, it is still an open question whether these isoforms are functionally different. In the present study, two profilin isoforms from Arabidopsis, PRF1 and PRF2 were fused with green fluorescent protein (GFP) tag and expressed in Escherichia coli and A. thaliana in order to compare their biochemical properties in vitro and their cellular distributions in vivo. Biochemical analysis revealed that fusion proteins of GFP-PRF1 and GFP-PRF2 can bind to poly-L-proline and G-actin showing remarkable differences. GFP-PRF1 has much higher affinities for both poly-L-proline and G-actin compared with GFP-PRF2. Observations of living cells in stable transgsnic A. thaliana lines revealed that 35S::GFP-PRF1 formed a filamentous network, while 35S::GFP-PRF2 formed polygonal meshes. Results from the treatment with latrunculin A and a subsequent recovery experiment indicated that filamentous alignment of GFP-PRF1 was likely associated with actin filaments. However, GFP-PRF2 localized to polygonal meshes resembling the endoplasmic reticulum. Our results provide evidence that Arabidopsis profllin isoforms PRF1 and PRF2 have different biochemical affinities for poly-L-proline and G-actin, and show distinctive Iocalizations in living cells. These data suggest that PRF1 and PRF2 are functionally different isoforms.
Keywords:actin filaments  Arabidopsis  endoplasmic reticulum  profilin isoforms  PRF1  PRF2
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