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Formate rescues neural tube defects caused by mutations in Slc25a32

机译:Formate挽救了Slc25a32中突变引起的神经管缺陷

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摘要

Periconceptional folic acid (FA) supplementation significantly reduces the prevalence of neural tube defects (NTDs). Unfortunately, some NTDs are FA resistant, and as such, NTDs remain a global public health concern. Previous studies have identified SLC25A32 as a mitochondrial folate transporter (MFT), which is capable of transferring tetrahydrofolate (THF) from cellular cytoplasm to the mitochondria in vitro. Herein, we show that gene trap inactivation of Slc25a32 (Mft) in mice induces NTDs that are folate (5-methyltetrahydrofolate, 5-mTHF) resistant yet are preventable by formate supplementation. Slc25a32gt/gt embryos die in utero with 100% penetrant cranial NTDs. 5-mTHF supplementation failed to promote normal neural tube closure (NTC) in mutant embryos, while formate supplementation enabled the majority (78%) of knockout embryos to complete NTC. A parallel genetic study in human subjects with NTDs identified biallelic loss of function SLC25A32 variants in a cranial NTD case. These data demonstrate that the loss of functional Slc25a32 results in cranial NTDs in mice and has also been observed in a human NTD patient.
机译:孕周叶酸(FA)的补充显着降低了神经管缺损(NTD)的患病率。不幸的是,一些NTD耐受FA,因此,NTD仍然是全球公共卫生问题。先前的研究已将SLC25A32确定为线粒体叶酸转运蛋白(MFT),它能够在体外将四氢叶酸(THF)从细胞质转移到线粒体。在这里,我们显示Slc25a32(Mft)在小鼠中的基因陷阱失活会诱导NTDs抵抗叶酸(5-甲基四氢叶酸,5-mTHF),但可以通过补充甲酸来预防。 Slc25a32 gt / gts>胚胎在子宫内死于100%渗透性颅脑NTD。 5-mTHF补充未能促进突变胚胎中正常的神经管闭合(NTC),而甲酸补充使大多数(78%)敲除胚胎能够完成NTC。在患有NTD的人类受试者中进行的一项并行遗传研究确定了颅内NTD病例中双等位基因功能SLC25A32变异的丧失。这些数据表明,功能性Slc25a32的缺失会在小鼠中导致颅内NTD,并且在人类NTD患者中也已观察到。

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