Abstract

Vitamin B12 (cobalamin) is an essential micronutrient for human health, and mutation and dysregulation of cobalamin metabolism are associated with serious diseases, such as methylmalonic aciduria and homocystinuria. Mutations in ABCD4 or LMBRD1, which encode the ABC transporter ABCD4 and lysosomal membrane protein LMBD1, respectively, lead to errors in cobalamin metabolism, with the phenotype of a failure to release cobalamin from lysosomes. However, the mechanism of transport of cobalamin across the lysosomal membrane remains unknown. We previously demonstrated that LMBD1 is required for the translocation of ABCD4 from the endoplasmic reticulum to lysosomes. This suggests that ABCD4 performs an important function in lysosomal membrane cobalamin transport. In this study, we expressed human ABCD4 and LMBD1 in methylotrophic yeast and purified them. We prepared ABCD4 and/or LMBD1 containing liposomes loaded with cobalamin and then quantified the release of cobalamin from the liposomes by reverse-phase HPLC. We observed that ABCD4 was able to transport cobalamin from the inside to the outside of liposomes dependent on its ATPase activity and that LMBD1 exhibited no cobalamin transport activity. These results suggest that ABCD4 may be capable of transporting cobalamin from the lysosomal lumen to the cytosol. Furthermore, we examined a series of ABCD4 missense mutations to understand how these alterations impair cobalamin transport. Our findings give insight into the molecular mechanism of cobalamin transport by which ABCD4 involves and its importance in cobalamin deficiency.

Highlights

  • To date, four ABCD proteins, ABCD1‒4, have been identified in humans [3,4,5,6]

  • To test whether ABCD4 by itself is sufficient to transport cobalamin, we purified His-tagged human ABCD4 expressed in K. phaffii and reconstituted it in liposomes according to the procedure we previously established [19]

  • ABCD4 expressed under the control of the strong methanolinducible AOX1 promoter in K. phaffii was solubilized by n-dodecyl-β-D-maltoside (β-DDM) and purified by affinity chromatography (Fig. S1A)

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Summary

RESEARCH ARTICLE

The lysosomal protein ABCD4 can transport vitamin B12 across liposomal membranes in vitro. Received for publication, September 24, 2020, and in revised form, March 26, 2021 Published, Papers in Press, May 3, 2021, https://doi.org/10.1016/ j.jbc.2021.100654. Katsuki Kitai1,‡, Kosuke Kawaguchi1,*,‡ , Takenori Tomohiro, Masashi Morita, Takanori So1, and Tsuneo Imanaka From the 1Graduate School of Medicine and Pharmaceutical Sciences, University of Toyama, Toyama, Japan; 2Faculty of Pharmaceutical Sciences, Hiroshima International University, Kure, Japan

Edited by Phyllis Hanson
Results
UV kDa
Discussion
Yeast strains and media
Preparation of proteoliposomes
ATPase activity
Cobalamin transport assay
Full Text
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