Rice phloem thioredoxin h has the capacity to mediate its own cell-to-cell transport through plasmodesmata

被引:0
|
作者
Yutaka Ishiwatari
Toru Fujiwara
K. C. McFarland
Keisuke Nemoto
Hiroaki Hayashi
Mitsuo Chino
William J. Lucas
机构
[1] Department of Applied Biological Chemistry,
[2] Graduate School of Agricultural and Life Sciences,undefined
[3] University of Tokyo,undefined
[4] Bunkyo-ku,undefined
[5] Tokyo 113,undefined
[6] Japan,undefined
[7] Department of Agricultural and Environmental Biology,undefined
[8] Graduate School of Agricultural and Life Sciences,undefined
[9] University of Tokyo,undefined
[10] Bunkyo-ku,undefined
[11] Tokyo 113,undefined
[12] Japan,undefined
[13] Section of Plant Biology,undefined
[14] Division of Biological Science,undefined
[15] University of California,undefined
[16] Davis,undefined
[17] CA 95616,undefined
[18] USA,undefined
来源
Planta | 1998年 / 205卷
关键词
Key words: Companion cell-sieve tube system; Nicotiana; Oryza (phloem thioredoxin); Phloem function; Plasmodesmata (protein trafficking); Thioredoxin (mutants);
D O I
暂无
中图分类号
学科分类号
摘要
Rice (Oryza sativa L.) phloem sieve tubes contain RPP13-1, a thioredoxin h protein that moves around the plant via the translocation stream. Such phloem-mobile proteins are thought to be synthesized in the companion cells prior to being transferred, through plasmodesmata, to the enucleate sieve-tube members. In this study, in-situ hybridization experiments confirmed that expression of RPP13-1 is restricted to companion cells within the mature phloem. To test the hypothesis that RPP13-1 enters the sieve tube, via plasmodesmata, recombinant RPP13-1 was expressed in Escherichia coli, extracted, purified and fluorescently labeled with fluorescein isothiocyanate (FITC) for use in microinjection experiments into tobacco (Nicotiana tabacum L.) mesophyll cells. The FITC-RPP13-1 moved from the injected cell into surrounding cells, whereas the E. coli thioredoxin, an evolutionary homolog of RPP13-1, when similarly labeled and injected, failed to move in this same experimental system. In addition, co-injection of RPP13-1 and FITC-dextrans established that RPP13-1 can induce an increase in plasmodesmal size exclusion limit to a value greater than 9.4 but less than 20 kDa. Nine mutant forms of RPP13-1 were constructed and tested for their capacity to move from cell to cell; two such mutants were found to be incapable of movement. Crystal-structure prediction studies were performed on wild-type and mutant RPP13-1 to identify the location of structural motifs required for protein trafficking through plasmodesmata. These studies are discussed with respect to plasmodesmal-mediated transport of macromolecules within the companion cell-sieve tube complex.
引用
收藏
页码:12 / 22
页数:10
相关论文
共 8 条
  • [1] Rice phloem thioredoxin h has the capacity to mediate its own cell-to-cell transport through plasmodesmata
    Ishiwatari, Y
    Fujiwara, T
    McFarland, KC
    Nemoto, K
    Hayashi, H
    Chino, M
    Lucas, WJ
    [J]. PLANTA, 1998, 205 (01) : 12 - 22
  • [2] Plasmodesmata mediate cell-to-cell transport of brassinosteroid hormones
    Yaowei Wang
    Jessica Perez-Sancho
    Matthieu Pierre Platre
    Brenda Callebaut
    Marija Smokvarska
    Karoll Ferrer
    Yongming Luo
    Trevor M. Nolan
    Takeo Sato
    Wolfgang Busch
    Philip N. Benfey
    Miroslav Kvasnica
    Johan M. Winne
    Emmanuelle M. Bayer
    Nemanja Vukašinović
    Eugenia Russinova
    [J]. Nature Chemical Biology, 2023, 19 : 1331 - 1341
  • [3] Plasmodesmata mediate cell-to-cell transport of brassinosteroid hormones
    Wang, Yaowei
    Perez-Sancho, Jessica
    Platre, Matthieu Pierre
    Callebaut, Brenda
    Smokvarska, Marija
    Ferrer, Karoll
    Luo, Yongming
    Nolan, Trevor M. M.
    Sato, Takeo
    Busch, Wolfgang
    Benfey, Philip N. N.
    Kvasnica, Miroslav
    Winne, Johan M. M.
    Bayer, Emmanuelle M. M.
    Vukasinovic, Nemanja
    Russinova, Eugenia
    [J]. NATURE CHEMICAL BIOLOGY, 2023, 19 (11) : 1331 - +
  • [4] Cell-to-cell transport through plasmodesmata in tree callus cultures
    Pina, Ana
    Errea, Pilar
    Schulz, Alexander
    Martens, Helle J.
    [J]. TREE PHYSIOLOGY, 2009, 29 (06) : 809 - 818
  • [6] Phloem sap proteins from Cucurbita maxima and Ricinus communis have the capacity to traffic cell to cell through plasmodesmata
    Balachandran, S
    Xiang, Y
    Schobert, C
    Thompson, GA
    Lucas, WJ
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1997, 94 (25) : 14150 - 14155
  • [7] ANK, a Host Cytoplasmic Receptor for the Tobacco mosaic virus Cell-to-Cell Movement Protein, Facilitates Intercellular Transport through Plasmodesmata
    Ueki, Shoko
    Spektor, Roman
    Natale, Danielle M.
    Citovsky, Vitaly
    [J]. PLOS PATHOGENS, 2010, 6 (11)
  • [8] Phosphatidic acids mediate transport of Ca2+ and H+ through plant cell membranes
    Medvedev, Sergei
    Voronina, Olga
    Tankelyun, Olga
    Bilova, Tatiana
    Suslov, Dmitry
    Bankin, Mikhail
    Mackievic, Viera
    Makavitskaya, Maryia
    Shishova, Maria
    Martinec, Jan
    Smolikova, Galina
    Sharova, Elena
    Demidchik, Vadim
    [J]. FUNCTIONAL PLANT BIOLOGY, 2019, 46 (06) : 533 - 542