4.8 Article

Molecular Characterization of Organelle-Type Nudix Hydrolases in Arabidopsis

期刊

PLANT PHYSIOLOGY
卷 148, 期 3, 页码 1412-1424

出版社

AMER SOC PLANT BIOLOGISTS
DOI: 10.1104/pp.108.128413

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资金

  1. MEXT, Japan [19039032]
  2. Japan Society for the Promotion of Science for Young Scientists [18-1015]
  3. Core Research for Evolutional Science and Technology, Japan Science and Technology Agency [2005-2010]
  4. Academic Frontier Project for Private Universities: Matching Fund Subsidy from MEXT [2004-2008]
  5. Grants-in-Aid for Scientific Research [19039032] Funding Source: KAKEN

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Nudix (for nucleoside diphosphates linked to some moiety X) hydrolases act to hydrolyze ribonucleoside and deoxyribonucleoside triphosphates, nucleotide sugars, coenzymes, or dinucleoside polyphosphates. Arabidopsis (Arabidopsis thaliana) contains 27 genes encoding Nudix hydrolase homologues (AtNUDX1 to -27) with a predicted distribution in the cytosol, mitochondria, and chloroplasts. Previously, cytosolic Nudix hydrolases (AtNUDX1 to -11 and -25) were characterized. Here, we conducted a characterization of organelle-type AtNUDX proteins (AtNUDX12 to -24, -26, and -27). AtNUDX14 showed pyrophosphohydrolase activity toward both ADP-ribose and ADP-glucose, although its K m value was approximately 100-fold lower for ADP-ribose (13.0 +/- 0.7 mu M) than for ADP-glucose (1,235 +/- 65 mu M). AtNUDX15 hydrolyzed not only reduced coenzyme A (118.7 +/- 3.4 mu M) but also a wide range of its derivatives. AtNUDX19 showed pyrophosphohydrolase activity toward both NADH (335.3 +/- 5.4 mu M) and NADPH (36.9 +/- 3.5 mu M). AtNUDX23 had flavin adenine dinucleotide pyrophosphohydrolase activity (9.1 +/- 0.9 mu M). Both AtNUDX26 and AtNUDX27 hydrolyzed diadenosine polyphosphates (n = 4-5). A confocal microscopic analysis using a green fluorescent protein fusion protein showed that AtNUDX15 is distributed in mitochondria and AtNUDX14-19, -23, -26, and -27 are distributed in chloroplasts. These AtNUDX mRNAs were detected ubiquitously in various Arabidopsis tissues. The T-DNA insertion mutants of AtNUDX13, -14, -15, -19, -20, -21, -25, -26, and -27 did not exhibit any phenotypical differences under normal growth conditions. These results suggest that Nudix hydrolases in Arabidopsis control a variety of metabolites and are pertinent to a wide range of physiological processes.

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