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Normophosphatemic Familial Tumoral Calcinosis Is Caused by Deleterious Mutations in SAMD9 Encoding a TNF-α Responsive Protein

机译:正常磷酸化家族性肿瘤性钙化病是由SAMD9的有害突变编码的TNF-α响应蛋白引起的。

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摘要

Normophosphatemic familial tumoral calcinosis (NFTC) is an autosomal recessive disorder characterized by calcium deposition in skin and mucosae and associated with unremitting pain and life-threatening skin infections. A homozygous missense mutation (p.K1495E), resulting in SAMD9 protein degradation, was recently shown to cause NFTC in five families of Jewish-Yemenite origin. In this study, we evaluated another Jewish-Yemenite NFTC kindred. All patients were compound heterozygous for two mutations in SAMD9: K1495E and a previously unreported nonsense mutation, R344X, predicted to result in a markedly truncated molecule. Screening of unaffected population-matched controls revealed heterozygosity for K1495E and R344X only in individuals of Jewish-Yemenite ancestry, but not in more than 700 control samples of other origins, including 93 non-Jewish Yemenite. These data may be suggestive of positive selection, considering the rarity of NFTC and the small size of the Jewish-Yemenite population; alternatively, they may reflect genetic drift or the effect of a population-specific modifier trait. Calcifications in NFTC generally develop over areas subjected to repeated trauma and are associated with marked inflammatory manifestations, indicating that SAMD9 may play a role in the inflammatory response to tissue injury. We therefore assessed the effect of cellular stress and tumor necrosis factor-α (TNF-α), a potent pro-inflammatory cytokine, on SAMD9 gene expression. Whereas exogenous hydrogen peroxide and heat shock did not affect SAMD9 transcription, osmotic shock was found to markedly upregulate SAMD9 expression. In addition, incubation of endothelial cells with TNF-α caused a dose-related, p38-dependant increase in SAMD9 expression. These data link NFTC and SAMD9 to the TNF-α signaling pathway, suggesting a role for this system in the regulation of extra-osseous calcification.
机译:正常磷酸盐家族性肿瘤性钙化病(NFTC)是一种常染色体隐性遗传疾病,其特征在于皮肤和粘膜中的钙沉积,并伴有不懈的疼痛和威胁生命的皮肤感染。最近发现纯合的错义突变(p.K1495E)导致SAMD9蛋白降解,在犹太-也门裔起源的五个家族中引起NFTC。在这项研究中,我们评估了另一种犹太-也门NFTC。所有患者均为SAMD9中两个突变的复合杂合子:K1495E和先前未报道的无意义突变R344X,预计会导致明显的截短的分子。筛选未受影响的人群匹配对照后,仅在犹太也门血统血统的个体中发现了K1495E和R344X的杂合性,但在超过700个其他来源的对照样本中却没有,包括93个非犹太也门血统。考虑到NFTC的稀有性和犹太人-也门人的规模小,这些数据可能暗示了积极的选择。或者,它们可能反映了遗传漂移或特定人群修饰性状的影响。 NFTC中的钙化通常会在遭受反复创伤的区域上形成,并伴有明显的炎症表现,这表明SAMD9可能在对组织损伤的炎症反应中起作用。因此,我们评估了细胞应激和有效的促炎细胞因子肿瘤坏死因子-α(TNF-α)对SAMD9基因表达的影响。尽管外源性过氧化氢和热休克不会影响SAMD9的转录,但发现渗透压休克会明显上调SAMD9的表达。此外,内皮细胞与TNF-α的孵育引起SAMD9表达的剂量相关,p38依赖性增加。这些数据将NFTC和SAMD9连接至TNF-α信号传导途径,表明该系统在骨外钙化调节中的作用。

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