Children's Hospital of Philadelphia, 3550 Market St, 3rd Floor, Philadelphia, PA 19104, USA.
Pediatrics. 2013 Feb;131(2):e629-34. doi: 10.1542/peds.2012-0899. Epub 2013 Jan 6.
Folate and vitamin B(12) metabolism are essential for de novo purine synthesis, and several defects in these pathways have been associated with immunodeficiency. Here we describe the occurrence of severe combined immunodeficiency (SCID) with megaloblastic anemia, leukopenia, atypical hemolytic uremic syndrome, and neurologic abnormalities in which hydroxocobalamin and folate therapy provided partial immune reconstitution. Whole exome sequencing identified compound heterozygous mutations in the MTHFD1 gene, which encodes a trifunctional protein essential for processing of single-carbon folate derivatives. We now report the immunologic details of this novel genetic cause of SCID and the response to targeted metabolic supplementation therapies. This finding expands the known metabolic causes of SCID and presents an important diagnostic consideration given the positive impact of therapy.
叶酸和维生素 B(12)代谢对于从头嘌呤合成至关重要,这些途径中的几个缺陷与免疫缺陷有关。在这里,我们描述了一种严重联合免疫缺陷 (SCID),伴有巨幼细胞性贫血、白细胞减少症、非典型溶血性尿毒症综合征和神经异常,其中羟钴胺素和叶酸治疗提供了部分免疫重建。外显子组测序鉴定出 MTHFD1 基因的复合杂合突变,该基因编码一种三功能蛋白,对于单碳叶酸衍生物的加工至关重要。我们现在报告这种新型 SCID 遗传病因的免疫学细节以及对靶向代谢补充治疗的反应。这一发现扩展了已知的 SCID 代谢病因,并考虑到治疗的积极影响,提出了一个重要的诊断注意事项。