Department of Cell Biology, UMC Utrecht, Utrecht, The Netherlands.
Pediatr Blood Cancer. 2012 Apr;58(4):598-605. doi: 10.1002/pbc.23253. Epub 2011 Jul 13.
UNC13D, encoding the protein munc13-4, is essential in intracellular trafficking and exocytosis of lytic granules. Mutations in this gene are associated with familial hemophagocytic lymphohistiocytosis type 3 (FHL3), a genetically heterogeneous, rare autosomal recessive immune disorder. How mutations affect function of munc13-4 is poorly understood. Since 2006 we genetically identified seven FHL patients with mutations in UNC13D.
Here, we report for the first time a c.2695C>T (p.Arg899X) mutation in exon 28 of UNC13D in three young unrelated Dutch patients. The mutation causes a premature stop codon and encodes munc13-4(1-899), which lacks the C-terminal C2 domain. Genealogical research and haplotyping of the patient families demonstrated that a single ancestral founder introduced the mutation in the Netherlands. We then characterized the mutant protein phenotypically in cell biological and immunological assays.
Munc13-4(1-899) was correctly targeted to CD63-positive secretory lysosomes, although its stability was reduced and dynamic turnover on the granule membrane became uncoupled from receptor signaling. In accord, and in contrast to wild-type munc13-4, ectopically expressed mutant failed to rescue degranulation in cells with silenced endogenous munc13-4.
The functional and clinical data showed that this novel Dutch founder mutation leads to severe early onset of FHL3 due to misfolding and degradation of munc13-4(1-899).
UNC13D 基因编码蛋白 munc13-4,对溶酶体的胞内运输和胞吐至关重要。该基因突变与家族性噬血细胞性淋巴组织细胞增多症 3 型(FHL3)有关,FHL3 是一种遗传异质性的、罕见的常染色体隐性免疫性疾病。目前尚不清楚突变如何影响 munc13-4 的功能。自 2006 年以来,我们已在 7 位 FHL 患者中发现 UNC13D 基因突变。
在此,我们首次报道了 3 例荷兰年轻非相关 FHL 患者 UNC13D 外显子 28 中 c.2695C>T(p.Arg899X)突变。该突变导致提前出现终止密码子,并编码缺乏 C 端 C2 结构域的 munc13-4(1-899)。对患者家系的遗传研究和单倍型分析表明,该突变是由单一祖先引入荷兰的。随后,我们通过细胞生物学和免疫学方法对突变蛋白进行了表型分析。
munc13-4(1-899)正确靶向 CD63 阳性分泌溶酶体,但稳定性降低,其在颗粒膜上的动态周转与受体信号脱耦。因此,与野生型 munc13-4 相反,异位表达的突变体未能挽救沉默内源性 munc13-4 后细胞的脱粒作用。
功能和临床数据表明,这种新的荷兰突变导致严重的早发性 FHL3,原因是 munc13-4(1-899)错误折叠和降解。