Literature DB >> 9489011

Molecular cloning of vacuolar H(+)-pyrophosphatase and its developmental expression in growing hypocotyl of mung bean.

Y Nakanishi1, M Maeshima.   

Abstract

Vacuolar proton-translocating inorganic pyrophosphatase and H(+)-ATPase acidify the vacuoles and power the vacuolar secondary active transport systems in plants. Developmental changes in the transcription of the pyrophosphatase in growing hypocotyls of mung bean (Vigna radiata) were investigated. The cDNA clone for the mung bean enzyme contains an uninterrupted open reading frame of 2298 bp, coding for a polypeptide of 766 amino acids. Hypocotyls were divided into elongating and mature regions. RNA analysis revealed that the transcript level of the pyrophosphatase was high in the elongating region of the 3-d-old hypocotyl but was extremely low in the mature region of the 5-d-old hypocotyl. The level of transcript of the 68-kD subunit of H(+)-ATPase also decreased after cell maturation. In the elongating region, the proton-pumping activity of pyrophosphatase on the basis of membrane protein was 3 times higher than that of H(+)-ATPase. After cell maturation, the pyrophosphatase activity decreased to 30% of that in the elongating region. The decline in the pyrophosphatase activity was in parallel with a decrease in the enzyme protein content. These findings indicate that the level of the pyrophosphatase, a main vacuolar proton pump in growing cells, is negatively regulated after cell maturation at the transcriptional level.

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Year:  1998        PMID: 9489011      PMCID: PMC35116          DOI: 10.1104/pp.116.2.589

Source DB:  PubMed          Journal:  Plant Physiol        ISSN: 0032-0889            Impact factor:   8.340


  27 in total

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Authors:  P Nyrén; B F Nore; A Strid
Journal:  Biochemistry       Date:  1991-03-19       Impact factor: 3.162

2.  Purification and properties of vacuolar membrane proton-translocating inorganic pyrophosphatase from mung bean.

Authors:  M Maeshima; S Yoshida
Journal:  J Biol Chem       Date:  1989-11-25       Impact factor: 5.157

3.  Characterization of the H Translocating Adenosine Triphosphatase and Pyrophosphatase of Vacuolar Membranes Isolated by Means of a Perfusion Technique from Chara corallina.

Authors:  K Takeshige; M Tazawa; A Hager
Journal:  Plant Physiol       Date:  1988-04       Impact factor: 8.340

4.  Vacuolar H(+)-ATPase 69-kilodalton catalytic subunit cDNA from developing cotton (Gossypium hirsutum) ovules.

Authors:  T A Wilkins
Journal:  Plant Physiol       Date:  1993-06       Impact factor: 8.340

5.  Analysis of the substrate binding site and carboxyl terminal region of vacuolar H+-pyrophosphatase of mung bean with peptide antibodies.

Authors:  A Takasu; Y Nakanishi; T Yamauchi; M Maeshima
Journal:  J Biochem       Date:  1997-10       Impact factor: 3.387

6.  Mechanism of the Decline in Vacuolar H -ATPase Activity in Mung Bean Hypocotyls during Chilling.

Authors:  C Matsuura-Endo; M Maeshima; S Yoshida
Journal:  Plant Physiol       Date:  1992-10       Impact factor: 8.340

7.  The Role of Magnesium, Pyrophosphate, and Their Complexes as Substrates and Activators of the Vacuolar H+-Pumping Inorganic Pyrophosphatase (Studies Using Ligand Protection from Covalent Inhibitors).

Authors:  R. Gordon-Weeks; S. H. Steele; R. A. Leigh
Journal:  Plant Physiol       Date:  1996-05       Impact factor: 8.340

8.  Isolation and characterization of cDNAs encoding vacuolar H(+)-pyrophosphatase isoforms from rice (Oryza sativa L.).

Authors:  Y Sakakibara; H Kobayashi; K Kasamo
Journal:  Plant Mol Biol       Date:  1996-08       Impact factor: 4.076

9.  Localization of cytosolically oriented maleimide-reactive domain of vacuolar H(+)-pyrophosphatase.

Authors:  R G Zhen; E J Kim; P A Rea
Journal:  J Biol Chem       Date:  1994-09-16       Impact factor: 5.157

10.  THE PLANT VACUOLE.

Authors: 
Journal:  J Exp Biol       Date:  1992-11-01       Impact factor: 3.312

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  22 in total

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Journal:  Plant Mol Biol       Date:  2001-05       Impact factor: 4.076

2.  Differential regulation of soluble and membrane-bound inorganic pyrophosphatases in the photosynthetic bacterium Rhodospirillum rubrum provides insights into pyrophosphate-based stress bioenergetics.

Authors:  Rosa L López-Marqués; José R Pérez-Castiñeira; Manuel Losada; Aurelio Serrano
Journal:  J Bacteriol       Date:  2004-08       Impact factor: 3.490

3.  Structural aspects of the effectiveness of bisphosphonates as competitive inhibitors of the plant vacuolar proton-pumping pyrophosphatase.

Authors:  R Gordon-Weeks; S Parmar; T G Davies; R A Leigh
Journal:  Biochem J       Date:  1999-02-01       Impact factor: 3.857

4.  The flip side of the Arabidopsis type I proton-pumping pyrophosphatase (AVP1): Using a transmembrane H+ gradient to synthesize pyrophosphate.

Authors:  Joachim Scholz-Starke; Cecilia Primo; Jian Yang; Raju Kandel; Roberto A Gaxiola; Kendal D Hirschi
Journal:  J Biol Chem       Date:  2018-12-03       Impact factor: 5.157

5.  Characterization and expression analyses of the H⁺-pyrophosphatase gene in rye.

Authors:  Chang-Shui Wang; Qian-Tao Jiang; Jian Ma; Xiu-Ying Wang; Ji-Rui Wang; Guo-Yue Chen; Peng-Fei Qi; Yuan-Ying Peng; Xiu-Jin Lan; You-Liang Zheng; Yu-Ming Wei
Journal:  J Genet       Date:  2016-09       Impact factor: 1.166

6.  Deletion of a histidine-rich loop of AtMTP1, a vacuolar Zn(2+)/H(+) antiporter of Arabidopsis thaliana, stimulates the transport activity.

Authors:  Miki Kawachi; Yoshihiro Kobae; Tetsuro Mimura; Masayoshi Maeshima
Journal:  J Biol Chem       Date:  2008-01-18       Impact factor: 5.157

Review 7.  Physiological and molecular mechanisms of plant salt tolerance.

Authors:  Jin-Lin Zhang; Huazhong Shi
Journal:  Photosynth Res       Date:  2013-03-29       Impact factor: 3.573

8.  Heterogeneity of the vacuolar pyrophosphatase protein from Chenopodium rubrum.

Authors:  W Kranewitter; R Gehwolf; M Nagl; W Pfeiffer; F W Bentrup
Journal:  Protoplasma       Date:  1999       Impact factor: 3.356

9.  Apoplasmic loading in the rice phloem supported by the presence of sucrose synthase and plasma membrane-localized proton pyrophosphatase.

Authors:  Kamesh C Regmi; Shangji Zhang; Roberto A Gaxiola
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10.  Purification and functional characterization of protoplasts and intact vacuoles from grape cells.

Authors:  Natacha Fontes; Rui Silva; Céline Vignault; Fatma Lecourieux; Hernâni Gerós; Serge Delrot
Journal:  BMC Res Notes       Date:  2010-01-22
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