Fettelschoss Victoria, Burda Patricie, Sagné Corinne, Coelho David, De Laet Corinne, Lutz Seraina, Suormala Terttu, Fowler Brian, Pietrancosta Nicolas, Gasnier Bruno, Bornhauser Beat, Froese D Sean, Baumgartner Matthias R
Division of Metabolism and Children's Research Center, University Children's Hospital, CH-8032 Zurich, Switzerland.
Neurophotonics Laboratory UMR 8250, Paris Descartes University, CNRS, Sorbonne Paris Cité, F-75006 Paris, France.
J Biol Chem. 2017 Jul 14;292(28):11980-11991. doi: 10.1074/jbc.M117.784819. Epub 2017 Jun 1.
Vitamin B (cobalamin (Cbl)), in the cofactor forms methyl-Cbl and adenosyl-Cbl, is required for the function of the essential enzymes methionine synthase and methylmalonyl-CoA mutase, respectively. Cbl enters mammalian cells by receptor-mediated endocytosis of protein-bound Cbl followed by lysosomal export of free Cbl to the cytosol and further processing to these cofactor forms. The integral membrane proteins LMBD1 and ABCD4 are required for lysosomal release of Cbl, and mutations in the genes and result in the cobalamin metabolism disorders cblF and cblJ. We report a new (fifth) patient with the cblJ disorder who presented at 7 days of age with poor feeding, hypotonia, methylmalonic aciduria, and elevated plasma homocysteine and harbored the mutations c.1667_1668delAG [p.Glu556Glyfs*27] and c.1295G>A [p.Arg432Gln] in the gene. Cbl cofactor forms are decreased in fibroblasts from this patient but could be rescued by overexpression of either ABCD4 or, unexpectedly, LMBD1. Using a sensitive live-cell FRET assay, we demonstrated selective interaction between ABCD4 and LMBD1 and decreased interaction when ABCD4 harbored the patient mutations p.Arg432Gln or p.Asn141Lys or when artificial mutations disrupted the ATPase domain. Finally, we showed that ABCD4 lysosomal targeting depends on co-expression of, and interaction with, LMBD1. These data broaden the patient and mutation spectrum of cblJ deficiency, establish a sensitive live-cell assay to detect the LMBD1-ABCD4 interaction, and confirm the importance of this interaction for proper intracellular targeting of ABCD4 and cobalamin cofactor synthesis.
维生素B(钴胺素(Cbl))以甲基钴胺素和腺苷钴胺素的辅因子形式分别是必需酶甲硫氨酸合酶和甲基丙二酰辅酶A变位酶发挥功能所必需的。Cbl通过受体介导的与蛋白质结合的Cbl的内吞作用进入哺乳动物细胞,随后游离的Cbl通过溶酶体转运至细胞质,并进一步加工成这些辅因子形式。完整膜蛋白LMBD1和ABCD4是Cbl从溶酶体释放所必需的, 基因和 基因中的突变会导致钴胺素代谢紊乱cblF和cblJ。我们报告了一名患有cblJ疾病的新(第五例)患者,该患者在7日龄时出现喂养困难、肌张力减退、甲基丙二酸尿症、血浆同型半胱氨酸升高,并在 基因中携带c.1667_1668delAG [p.Glu556Glyfs*27]和c.1295G>A [p.Arg432Gln]突变。该患者成纤维细胞中的Cbl辅因子形式减少,但可通过过表达ABCD4或出乎意料地过表达LMBD1来挽救。使用灵敏的活细胞荧光共振能量转移(FRET)分析,我们证明了ABCD4与LMBD1之间的选择性相互作用,当ABCD4携带患者突变p.Arg432Gln或p.Asn141Lys时或人工突变破坏ATP酶结构域时,相互作用减弱。最后,我们表明ABCD4的溶酶体靶向依赖于与LMBD1的共表达及相互作用。这些数据拓宽了cblJ缺乏症的患者和突变谱,建立了一种灵敏的活细胞分析方法来检测LMBD1-ABCD4相互作用,并证实了这种相互作用对于ABCD4正确的细胞内靶向定位和钴胺素辅因子合成的重要性。
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