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Inborn Error of Cobalamin Metabolism Associated with the Intracellular Accumulation of Transcobalamin-Bound Cobalamin and Mutations in ZNF143, Which Codes for a Transcriptional Activator

机译:钴胺素代谢的先天性错误与跨钴胺素结合的钴胺素的细胞内积累和ZNF143的突变有关,ZNF143编码转录激活因子。

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摘要

Vitamin B-12 (cobalamin, Cbl) cofactors adenosylcobalamin (AdoCbl) and methylcobalamin (MeCbl) are required for the activity of the enzymes methylmalonyl-CoA mutase (MCM) and methionine synthase (MS). Inborn errors of Cbl metabolism are rare Mendelian disorders associated with hematological and neurological manifestations, and elevations of methylmalonic acid and/or homocysteine in the blood and urine. We describe a patient whose fibroblasts had decreased functional activity of MCM and MS and decreased synthesis of AdoCbl and MeCbl (3.4% and 1.0% of cellular Cbl, respectively). The defect in cultured patient fibroblasts complemented those from all known complementation groups. Patient cells accumulated transcobalamin-bound-Cbl, a complex which usually dissociates in the lysosome to release free Cbl. Whole-exome sequencing identified putative disease-causing variants c.851T>G (p.L284*) and c.1019C>T (p.T340I) in transcription factor ZNF143. Proximity biotinylation analysis confirmed the interaction between ZNF143 and HCFC1, a protein that regulates expression of the Cbl trafficking enzyme MMACHC. qRT-PCR analysis revealed low MMACHC expression levels both in patient fibroblasts, and in control fibroblasts incubated with ZNF143 siRNA.
机译:维生素B-12(钴胺素,Cbl)辅因子腺苷钴胺素(AdoCbl)和甲基钴胺素(MeCbl)对于甲基丙二酰辅酶A辅酶(MCM)和蛋氨酸合酶(MS)的活性是必需的。 Cbl代谢的先天性错误是与血液和神经系统表现以及血液和尿液中甲基丙二酸和/或高半胱氨酸升高有关的罕见孟德尔疾病。我们描述了一名患者,其成纤维细胞的MCM和MS的功能活性降低,而AdoCbl和MeCbl的合成降低(分别为细胞Cbl的3.4%和1.0%)。培养的患者成纤维细胞中的缺陷补充了所有已知互补组的缺陷。患者细胞积聚了经钴胺素结合的Cbl,这种复合物通常在溶酶体中解离,释放出游离的Cbl。全外显子组测序鉴定了转录因子ZNF143中推定的致病变体c.851T> G(p.L284 *)和c.1019C> T(p.T340I)。邻近生物素化分析证实ZNF143和HCFC1之间的相互作用,该蛋白调节Cbl转运酶MMACHC的表达。 qRT-PCR分析显示,在患者成纤维细胞和与ZNF143 siRNA孵育的对照成纤维细胞中,MMACHC表达水平均较低。

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