Literature DB >> 19136951

Identification of a putative lysosomal cobalamin exporter altered in the cblF defect of vitamin B12 metabolism.

Frank Rutsch1, Susann Gailus, Isabelle R Miousse, Terttu Suormala, Corinne Sagné, Mohammad Reza Toliat, Gudrun Nürnberg, Tanja Wittkampf, Insa Buers, Azita Sharifi, Martin Stucki, Christian Becker, Matthias Baumgartner, Horst Robenek, Thorsten Marquardt, Wolfgang Höhne, Bruno Gasnier, David S Rosenblatt, Brian Fowler, Peter Nürnberg.   

Abstract

Vitamin B(12) (cobalamin) is essential in animals for metabolism of branched chain amino acids and odd chain fatty acids, and for remethylation of homocysteine to methionine. In the cblF inborn error of vitamin B(12) metabolism, free vitamin accumulates in lysosomes, thus hindering its conversion to cofactors. Using homozygosity mapping in 12 unrelated cblF individuals and microcell-mediated chromosome transfer, we identified a candidate gene on chromosome 6q13, LMBRD1, encoding LMBD1, a lysosomal membrane protein with homology to lipocalin membrane receptor LIMR. We identified five different frameshift mutations in LMBRD1 resulting in loss of LMBD1 function, with 18 of the 24 disease chromosomes carrying the same mutation embedded in a common 1.34-Mb haplotype. Transfection of fibroblasts of individuals with cblF with wild-type LMBD1 rescued cobalamin coenzyme synthesis and function. This work identifies LMBRD1 as the gene underlying the cblF defect of cobalamin metabolism and suggests that LMBD1 is a lysosomal membrane exporter for cobalamin.

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Year:  2009        PMID: 19136951     DOI: 10.1038/ng.294

Source DB:  PubMed          Journal:  Nat Genet        ISSN: 1061-4036            Impact factor:   38.330


  30 in total

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7.  Complementation studies in the cblA class of inborn error of cobalamin metabolism: evidence for interallelic complementation and for a new complementation class (cblH).

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9.  Homocystinuria and megaloblastic anemia responsive to vitamin B12 therapy. An inborn error of metabolism due to a defect in cobalamin metabolism.

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  62 in total

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Review 4.  Insights into lysosomal cobalamin trafficking: lessons learned from cblF disease.

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Review 6.  Age-related lysosomal dysfunction: an unrecognized roadblock for cobalamin trafficking?

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