Gambardella Antonio, Liu Yu-Chi, Bennett Mark F, Green Timothy E, Damiano John A, Fortunato Francesco, Coleman Matthew J, Cherfils Jacqueline, Barnier Jean-Vianney, Gecz Jozef, Bahlo Melanie, Berkovic Samuel F, Hildebrand Michael S
Institute of Neurology, Department of Medical and Surgical Sciences, Magna Graecia University, Catanzaro, Italy.
Epilepsy Research Centre, Department of Medicine, The University of Melbourne, Austin Health, Heidelberg, Victoria, Australia.
Epilepsia Open. 2025 Apr;10(2):593-601. doi: 10.1002/epi4.13124. Epub 2025 Jan 13.
Protein-activated kinases mediate spine morphogenesis and synaptic plasticity. PAK3 is part of the p21-activated kinases (PAKs) family of Ras-signaling serine/threonine kinases. Pathogenic variants in the X-linked gene PAK3 have been described in patients with neurodevelopmental syndromes. We analyzed an Italian family with sleep-related hypermotor epilepsy, intellectual disability, psychiatric and behavioral problems, and dysmorphic facial features. A novel PAK3 c.342_344del (p.Lys114del) inframe deletion was detected in the family. Protein structure analysis supported deleterious impact of p.Lys114 deletion through loss or partial loss of autoinhibition of PAK3 protein kinase activity. The male proband had drug-resistant hypermotor seizures and moderate intellectual disability. His brother had drug-responsive hypermotor seizures and mild intellectual disability. Both brothers were hemizygous and had psychiatric and behavioral problems as well as dysmorphic facial features. Their mother had never had seizures but was shown to be mosaic for the PAK3 pathogenic variant. She had normal intellect but did have short stature and dysmorphic facial features similar to her sons. This is the first reported association of a PAK3 pathogenic variant with sleep-related hypermotor epilepsy. PAK3 testing should be considered in families with suspected X-linked sleep-related hypermotor epilepsy and intellectual disability, including for mosaicism in mildly affected females. PLAIN LANGUAGE SUMMARY: We studied an Italian family with sleep-related hypermotor epilepsy, intellectual disability, psychiatric and behavioral problems, and dysmorphic facial features. A novel PAK3 c.342_344del (p.Lys114del) inframe deletion was detected in the family. Protein structure analysis supported deleterious impact of p.Lys114 deletion through loss or partial loss of autoinhibition of PAK3 protein kinase activity. This is the first reported association of a PAK3 pathogenic variant with sleep-related hypermotor epilepsy. PAK3 testing should be considered in families with suspected X-linked sleep-related hypermotor epilepsy and intellectual disability, including for mosaicism in mildly affected females.
蛋白质激活激酶介导脊柱形态发生和突触可塑性。PAK3是Ras信号丝氨酸/苏氨酸激酶的p21激活激酶(PAKs)家族的一部分。X连锁基因PAK3的致病变异已在神经发育综合征患者中被描述。我们分析了一个患有与睡眠相关的运动过多性癫痫、智力残疾、精神和行为问题以及面部畸形特征的意大利家庭。在该家庭中检测到一种新的PAK3 c.342_344del(p.Lys114del)框内缺失。蛋白质结构分析支持p.Lys114缺失通过PAK3蛋白激酶活性的自抑制丧失或部分丧失产生有害影响。男性先证者患有耐药性运动过多性癫痫和中度智力残疾。他的兄弟患有药物反应性运动过多性癫痫和轻度智力残疾。两兄弟均为半合子,有精神和行为问题以及面部畸形特征。他们的母亲从未发作过癫痫,但被证明是PAK3致病变异的嵌合体。她智力正常,但身材矮小,面部畸形特征与儿子相似。这是首次报道PAK3致病变异与睡眠相关的运动过多性癫痫有关。对于疑似X连锁睡眠相关运动过多性癫痫和智力残疾的家庭,应考虑进行PAK3检测,包括对轻度受影响女性的嵌合体检测。
我们研究了一个患有与睡眠相关的运动过多性癫痫、智力残疾、精神和行为问题以及面部畸形特征的意大利家庭。在该家庭中检测到一种新的PAK3 c.34