Literature DB >> 21854209

Pentavalent arsenate transport by zebrafish phosphate transporter NaPi-IIb1.

Lauren C Beene1, Janell Halluer, Masafumi Yoshinaga, Mohammad Hamdi, Zijuan Liu.   

Abstract

Arsenate is a pentavalent form of arsenic that shares similar chemical properties to phosphate. It has been shown to be taken up by phosphate transporters in both eukaryotic and prokaryotic microbes such as yeast and Escherichia coli. Recently, the arsenate uptake in vertebrate cells was reported to be facilitated by mammalian type II sodium/phosphate transporter with different affinities. As arsenate is the most common form of arsenic exposure in aquatic system, identifying the uptake pathway of arsenate into aquatic animals is a crucial step in the elucidation of the entire metabolic pathway of arsenic. In this study, the ability of a zebrafish phosphate transporter, NaPi-IIb1 (SLC34a2a), to transport arsenate was examined. Our results demonstrate that a type II phosphate transporter in zebrafish, NaPi-IIb1, can transport arsenate in vitro when expressed in Xenopus laevis oocytes. NaPi-IIb1 mediates a high-affinity arsenate transport, with a K(m) of 0.22 mM. The natural substrate of NaPi-IIb1, dibasic phosphate, inhibits arsenate transport. Arsenate transport via NaPi-IIb1 is coupled with Na(+) and exhibits sigmoidal kinetics with a Hill coefficient of 3.24 ± 0.19. Consistent with these in vitro studies, significant arsenate accumulation is observed in all examined zebrafish tissues where NaPi-IIb1 is expressed, particularly intestine, kidney, and eye, indicating that zebrafish NaPi-IIb1 is likely the transport protein that is responsible for arsenic accumulation in vivo.

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Year:  2011        PMID: 21854209      PMCID: PMC3174731          DOI: 10.1089/zeb.2011.0701

Source DB:  PubMed          Journal:  Zebrafish        ISSN: 1545-8547            Impact factor:   1.985


  31 in total

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2.  Determination of arsenic species in water, soils and plants.

Authors:  J Mattusch; R Wennrich; A C Schmidt; W Reisser
Journal:  Fresenius J Anal Chem       Date:  2000-01

Review 3.  Arsenic speciation analysis in water samples: a review of the hyphenated techniques.

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4.  Characterization of a type IIb sodium-phosphate cotransporter from zebrafish (Danio rerio) kidney.

Authors:  C Graham; P Nalbant; B Schölermann; H Hentschel; R K H Kinne; A Werner
Journal:  Am J Physiol Renal Physiol       Date:  2002-12-17

5.  Arsenite transport by mammalian aquaglyceroporins AQP7 and AQP9.

Authors:  Zijuan Liu; Jian Shen; Jennifer M Carbrey; Rita Mukhopadhyay; Peter Agre; Barry P Rosen
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Review 6.  Accumulation of heavy metals by intestinal helminths in fish: an overview and perspective.

Authors:  B Sures
Journal:  Parasitology       Date:  2003       Impact factor: 3.234

7.  In vivo reduction of arsenate in mice and rabbits.

Authors:  M Vahter; J Envall
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Journal:  Toxicol Appl Pharmacol       Date:  2008-06-10       Impact factor: 4.219

Review 9.  Biochemistry of arsenic detoxification.

Authors:  Barry P Rosen
Journal:  FEBS Lett       Date:  2002-10-02       Impact factor: 4.124

Review 10.  Transport of toxic metals by molecular mimicry.

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  9 in total

Review 1.  The SLC34 family of sodium-dependent phosphate transporters.

Authors:  Carsten A Wagner; Nati Hernando; Ian C Forster; Jürg Biber
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3.  Paralogous Regulators ArsR1 and ArsR2 of Pseudomonas putida KT2440 as a Basis for Arsenic Biosensor Development.

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4.  The Effect of Chronic Arsenic Exposure in Zebrafish.

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Journal:  Zebrafish       Date:  2016-05-03       Impact factor: 1.985

5.  Identification of an S-adenosylmethionine (SAM) dependent arsenic methyltransferase in Danio rerio.

Authors:  Mohamad Hamdi; Masafumi Yoshinaga; Charles Packianathan; Jie Qin; Janell Hallauer; Joseph R McDermott; Hung-Chi Yang; Kan-Jen Tsai; Zijuan Liu
Journal:  Toxicol Appl Pharmacol       Date:  2012-05-07       Impact factor: 4.219

Review 6.  Arsenic and antimony transporters in eukaryotes.

Authors:  Ewa Maciaszczyk-Dziubinska; Donata Wawrzycka; Robert Wysocki
Journal:  Int J Mol Sci       Date:  2012-03-15       Impact factor: 6.208

Review 7.  Zebrafish as a Model System for Investigating the Compensatory Regulation of Ionic Balance during Metabolic Acidosis.

Authors:  Lletta Lewis; Raymond W M Kwong
Journal:  Int J Mol Sci       Date:  2018-04-05       Impact factor: 5.923

8.  Topology, tissue distribution, and transcriptional level of SLC34s in response to Pi and pH in grass carp Ctenopharyngodon idella.

Authors:  Yong-Shuang Dai; Wen-Li Pei; Yuan-Yuan Wang; Zhe Wang; Mei-Qin Zhuo
Journal:  Fish Physiol Biochem       Date:  2021-07-20       Impact factor: 2.794

9.  Folic acid protects against arsenic-mediated embryo toxicity by up-regulating the expression of Dvr1.

Authors:  Yan Ma; Chen Zhang; Xiao-Bo Gao; Hai-Yan Luo; Yang Chen; Hui-hua Li; Xu Ma; Cai-Ling Lu
Journal:  Sci Rep       Date:  2015-11-05       Impact factor: 4.379

  9 in total

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