Literature DB >> 11592824

Characterization of a murine high-affinity thiamine transporter, Slc19a2.

J C Fleming1, M P Steinkamp, R Kawatsuji, E Tartaglini, J L Pinkus, G S Pinkus, M D Fleming, E J Neufeld.   

Abstract

Thiamine-responsive megaloblastic anemia with deafness and diabetes (TRMA) is a rare autosomal recessive disorder of thiamine transport. Previous studies have demonstrated that the disease is caused by mutations in the SLC19A2 gene encoding a high-affinity thiamine transporter. We hypothesize that thiamine transport, mediated by SLC19A2, plays a role in the development and or maintenance of several organ systems, in particular the erythropoietic, auditory, and glucose homeostasis systems. To investigate the transporter further, we cloned the murine Slc19a2 locus and characterized the resulting protein. Murine Slc19a2 is a 498 amino acid protein, with 12 predicted transmembrane domains. The gene spans approximately 13kb with 6 exons, structurally identical to that of the human homolog. We localized the Slc19a2 gene to mouse chromosome 1, a region syntenic to human chromosome 1q23 that contains the TRMA locus. Transient expression of Slc19a2 in HEK293T cells resulted in specific uptake of [3H] thiamine, confirming a thiamine transporter function. Western blot analysis of mouse tissues reveals a wide distribution of Slc19a2 protein. Immunohistochemistry studies indicate that Slc19a2 is expressed on the cell surface and intracellularly, and is specifically localized to a subpopulation of cells in cochlea, small intestine, and pancreas. Copyright 2001 Academic Press.

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Year:  2001        PMID: 11592824     DOI: 10.1006/mgme.2001.3241

Source DB:  PubMed          Journal:  Mol Genet Metab        ISSN: 1096-7192            Impact factor:   4.797


  14 in total

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Review 2.  SLC19: the folate/thiamine transporter family.

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3.  Deletion of SLC19A2, the high affinity thiamine transporter, causes selective inner hair cell loss and an auditory neuropathy phenotype.

Authors:  M C Liberman; E Tartaglini; J C Fleming; E J Neufeld
Journal:  J Assoc Res Otolaryngol       Date:  2006-04-27

4.  Restoration of high-level transport activity by human reduced folate carrier/ThTr1 thiamine transporter chimaeras: role of the transmembrane domain 6/7 linker region in reduced folate carrier function.

Authors:  Xiang Y Liu; Teah L Witt; Larry H Matherly
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5.  Perinatal thiamine deficiency causes cochlear innervation abnormalities in mice.

Authors:  Stéphane F Maison; Yanbo Yin; Leslie D Liberman; M Charles Liberman
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7.  Submolecular regulation of cell transformation by deuterium depleting water exchange reactions in the tricarboxylic acid substrate cycle.

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8.  Adenosine A1 Receptor Protects Against Cisplatin Ototoxicity by Suppressing the NOX3/STAT1 Inflammatory Pathway in the Cochlea.

Authors:  Tejbeer Kaur; Vikrant Borse; Sandeep Sheth; Kelly Sheehan; Sumana Ghosh; Srinivasan Tupal; Sarvesh Jajoo; Debashree Mukherjea; Leonard P Rybak; Vickram Ramkumar
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9.  Does early treatment prevent deafness in thiamine-responsive megaloblastic anaemia syndrome?

Authors:  Leyla Akın; Selim Kurtoğlu; Mustafa Kendirci; Mustafa Ali Akın; Musa Karakükçü
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10.  A novel homozygous SLC19A2 mutation in a Portuguese patient with diabetes mellitus and thiamine-responsive megaloblastic anaemia.

Authors:  Sophia Tahir; Lieve Gj Leijssen; Maha Sherif; Carla Pereira; Anabela Morais; Khalid Hussain
Journal:  Int J Pediatr Endocrinol       Date:  2015-04-15
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