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进行性骨化性纤维发育不良严重变异型(ACVR1 c.772G>A;R258G)的多系统受累:两例患者报告

Multi-system involvement in a severe variant of fibrodysplasia ossificans progressiva (ACVR1 c.772G>A; R258G): A report of two patients.

作者信息

Kaplan Frederick S, Kobori Joyce A, Orellana Carmen, Calvo Inmaculada, Rosello Monica, Martinez Francisco, Lopez Berta, Xu Meiqi, Pignolo Robert J, Shore Eileen M, Groppe Jay C

机构信息

Department of Orthopaedic Surgery, Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania.

Department ofMedicine, Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania.

出版信息

Am J Med Genet A. 2015 Oct;167A(10):2265-71. doi: 10.1002/ajmg.a.37205. Epub 2015 Jun 11.

DOI:10.1002/ajmg.a.37205
PMID:26097044
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4567450/
Abstract

Severe variants of fibrodysplasia ossificans progressiva (FOP) affect <2% of all FOP patients worldwide, but provide an unprecedented opportunity to probe the phenotype-genotype relationships that propel the pathology of this disabling disease. We evaluated two unrelated children who had severe reduction deficits of the hands and feet with absence of nails, progressive heterotopic ossification, hypoplasia of the brain stem, motor and cognitive developmental delays, facial dysmorphology, small malformed teeth, and abnormal hair development. One child had sensorineural hearing loss, microcytic anemia, and a tethered spinal cord and the other had a patent ductus arteriosus and gonadal dysgenesis with sex reversal (karyotype 46, XY female). Both children had an identical mutation in ACVR1 c.772A>G; p.Arg258Gly (R258G), not previously described in FOP. Although many, if not most, FOP mutations directly perturb the structure of the GS regulatory subdomain and presumably the adjacent αC helix, substitution with glycine at R258 may directly alter the position of the helix in the kinase domain, eliminating a key aspect of the autoinhibitory mechanism intrinsic to the wild-type ACVR1 kinase. The high fidelity phenotype-genotype relationship in these unrelated children with the most severe FOP phenotype reported to date suggests that the shared features are due to the dysregulated activity of the mutant kinase during development and postnatally, and provides vital insight into the structural biology and function of ACVR1 as well as the design of small molecule inhibitors.

摘要

进行性骨化性纤维发育不良(FOP)的严重变异型在全球所有FOP患者中所占比例不到2%,但为探究推动这种致残性疾病病理过程的表型-基因型关系提供了前所未有的机会。我们评估了两名无亲缘关系的儿童,他们存在手足严重发育不全且无指甲、进行性异位骨化、脑干发育不全、运动和认知发育迟缓、面部畸形、小而畸形的牙齿以及毛发发育异常。一名儿童患有感音神经性听力损失、小细胞贫血和脊髓栓系,另一名儿童患有动脉导管未闭和性腺发育不全伴性反转(核型46,XY女性)。两名儿童在ACVR1基因中均存在相同的c.772A>G突变;p.Arg258Gly(R258G),此前在FOP中未被描述过。尽管许多(如果不是大多数)FOP突变直接扰乱了GS调节亚结构域的结构,大概也扰乱了相邻的αC螺旋,但R258位点被甘氨酸取代可能直接改变了激酶结构域中螺旋的位置,消除了野生型ACVR1激酶固有的自抑制机制的一个关键方面。在这两名无亲缘关系的儿童中,迄今为止报道的最严重FOP表型具有高度保真的表型-基因型关系,这表明共同特征是由于突变激酶在发育过程中和出生后活性失调所致,并为ACVR1的结构生物学和功能以及小分子抑制剂的设计提供了重要见解。

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