A novel case of homozygous PAX1 mutation associated with hypoparathyroidism.

Benjamin L Hamel, Seema Kumar, Leah Heidenreich, Avni Joshi, Christiana DaSilva, Faizal Z Asumda
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Abstract

The PAX1 gene plays an important role in the development of the parathyroid glands and the thymus. Mouse knockout models of PAX1, PAX3, and PAX9 have been found to have hypoplastic or absent parathyroid glands. To our knowledge, there are no reported cases of PAX1-associated hypoparathyroidism in humans. We present a case of hypoparathyroidism in a 23-month-old boy with a homozygous pathogenic variant in the PAX1 gene (PAX1 NM_006192.5 c.463_465del variant), predicted to cause an in-frame deletion of asparagine at position 155 (p.Asn155del) of the PAX1 protein. The hypoparathyroidism was unmasked after the patient developed significant hypocalcemia while receiving GoLYTELY (polyethylene glycol 3350, sodium sulfate anhydrous, sodium bicarbonate, sodium chloride, potassium chloride) for bowel cleanout. The patient had mild and asymptomatic hypocalcemia prior to hospitalization. The patient was noted to have inappropriately normal parathyroid hormone (PTH) level at the time of documented hypocalcemia thereby suggesting a diagnosis of hypoparathyroidism.

Plain language summary: The first human case of hypoparathyroidism associated with a rare genetic disorder: a case report of PAX1 gene mutation The paired box (PAX) gene family is important for embryo development. One subfamily, PAX1, is necessary for development of the spinal column, thymus (important for the immune system development), and parathyroid (helps regulate the amount of calcium in the body). We present the case of a 23-month-old boy with known PAX1 gene mutation who came in with episodes of vomiting and poor growth. His presentation was thought to be most likely related to constipation. He was started on bowel cleanout medication and intravenous fluids. However, his calcium that had been mildly low subsequently dropped to very low levels. The level of parathyroid hormone (which helps regulate calcium levels) was inappropriately normal, meaning that his body was unable to make more, and was consistent with hypoparathyroidism. He was treated with calcium supplements and vitamin D and calcium levels normalized. He continues to be on calcium and vitamin D and calcium levels have remained stable. Doctors should keep this complication in mind when treating patients with PAX1 gene mutation.

Abstract Image

Abstract Image

纯合子PAX1突变与甲状旁腺功能减退相关的新病例。
PAX1基因在甲状旁腺和胸腺的发育中起重要作用。小鼠PAX1、PAX3和PAX9敲除模型均发现甲状旁腺发育不全或缺失。据我们所知,在人类中没有与pax1相关的甲状旁腺功能低下的病例报道。我们报告了一例23个月大的男孩甲状旁腺功能低下,其PAX1基因纯合子致病性变异(PAX1 NM_006192.5 c.463_465del变异),预计会导致PAX1蛋白155位(p.Asn155del)的框架内天门汀缺失。在接受golyly(聚乙二醇3350、无水硫酸钠、碳酸氢钠、氯化钠、氯化钾)肠道清洁时,患者出现明显的低钙血症,甲状旁腺功能减退症被发现。患者住院前有轻度无症状的低钙血症。在记录的低钙血症时,患者注意到甲状旁腺激素(PTH)水平异常,从而提示甲状旁腺功能低下的诊断。摘要:首例人类甲状旁腺功能减退症伴罕见遗传疾病:PAX1基因突变1例。配对盒(PAX)基因家族对胚胎发育很重要。其中一个亚家族,PAX1,对脊柱、胸腺(对免疫系统的发育很重要)和甲状旁腺(帮助调节体内钙的含量)的发育是必需的。我们提出的情况下,一个23个月大的男孩与已知的PAX1基因突变谁来发作呕吐和生长不良。他的表现被认为最有可能与便秘有关。他开始服用排便药物和静脉输液。然而,他的钙含量本来就很低,后来降到了很低的水平。甲状旁腺激素(帮助调节钙水平)的水平异常正常,这意味着他的身体无法产生更多的甲状旁腺功能低下。患者接受钙补充剂和维生素D治疗,钙水平恢复正常。他继续服用钙和维生素D钙水平保持稳定。医生在治疗PAX1基因突变患者时应牢记这一并发症。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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