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Overexpression of the wild-type SPT1 subunit lowers Desoxysphingolipid levels and rescues the phenotype of HSAN1

机译:野生型SPT1亚基的过表达降低了脱鞘鞘脂的水平并拯救了HSAN1的表型

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摘要

Mutations in the SPTLC1 subunit of serine palmitoyltransferase (SPT) cause an adult-onset, hereditary sensory, and autonomic neuropathy type I (HSAN1). We previously reported that mice bearing a transgene-expressing mutant SPTLC1 (tgSPTLC1(C133W)) show a reduction in SPT activity and hyperpathia at 10 months of age. Now analyzed at a later age, we find these mice develop sensory loss with a distal small fiber neuropathy and peripheral myelinopathy. This phenotype is largely reversed when these mice are crossed with transgenic mice overexpressing wild-type SPTLC1 showing that the mutant SPTLC1 protein is not inherently toxic. Simple loss of SPT activity also cannot account for the HSAN1 phenotype, since heterozygous SPTLC1 knock-out mice have reduced SPT activity but are otherwise normal. Rather, the presence of two newly identified, potentially deleterious deoxysphingoid bases in the tgSPTLC1(C133W), but not in the wild-type, double-transgenic tgSPTLC1(WT + C133W) or SPTLC1(+/-) mice, suggests that the HSAN1 mutations alter amino acid selectivity of the SPT enzyme such that palmitate is condensed with alanine and glycine, in addition to serine. This observation is consistent with the hypothesis that HSAN1 is the result of a gain-of-function mutation in SPTLC1 that leads to accumulation of a toxic metabolite.
机译:丝氨酸棕榈酰转移酶(SPT)的SPTLC1亚基的突变会导致成年发作,遗传性感觉和自主神经I型(HSAN1)。我们以前报道过,带有转基因表达突变体SPTLC1(tgSPTLC1(C133W))的小鼠在10个月大时显示SPT活性降低和多病。现在进行了较晚的分析,我们发现这些小鼠出现远端小纤维神经病变和周围性脊髓病的感觉丧失。当这些小鼠与过表达野生型SPTLC1的转基因小鼠杂交时,这种表型在很大程度上被逆转,这表明突变型SPTLC1蛋白不是天生的毒性。 SPT活性的简单丧失也不能解释HSAN1表型,因为杂合SPTLC1敲除小鼠的SPT活性降低,但正常。相反,在tgSPTLC1(C133W)中存在两个新发现的可能有害的脱氧鞘氨醇碱基,而在野生型双转基因tgSPTLC1(WT + C133W)或SPTLC1(+/-)小鼠中则没有,这表明HSAN1突变改变了SPT酶的氨基酸选择性,使得除了丝氨酸外,棕榈酸酯还与丙氨酸和甘氨酸缩合。该观察结果与以下假设一致:HSAN1是SPTLC1中功能获得性突变的结果,该突变导致有毒代谢产物的积累。

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