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在一个患有抽动秽语综合征和强迫症的家族中,接触蛋白相关蛋白2(CNTNAP2)基因出现了变异。

CNTNAP2 is disrupted in a family with Gilles de la Tourette syndrome and obsessive compulsive disorder.

作者信息

Verkerk Annemieke J M H, Mathews Carol A, Joosse Marijke, Eussen Bert H J, Heutink Peter, Oostra Ben A

机构信息

Department of Clinical Genetics, Erasmus MC, P.O. Box 1738, 3000 DR Rotterdam, The Netherlands.

出版信息

Genomics. 2003 Jul;82(1):1-9. doi: 10.1016/s0888-7543(03)00097-1.

DOI:10.1016/s0888-7543(03)00097-1
PMID:12809671
Abstract

Gilles de la Tourette syndrome (GTS) is a sporadic or inherited complex neuropsychiatric disorder characterized by involuntary motor and vocal tics. There is comorbidity with disorders like obsessive compulsive disorder and attention deficit hyperactivity disorder. Until now linkage analysis has pointed to a number of chromosomal locations, but has failed to identify a clear candidate gene(s). We have investigated a GTS family with a complex chromosomal insertion/translocation involving chromosomes 2 and 7. The affected father [46,XY,inv(2) (p23q22),ins(7;2) (q35-q36;p21p23)] and two affected children [46,XX,der(7)ins(7;2)(q35-q36;p21p23) and 46,XY,der(7)ins(7;2)(q35-q36;p213p23)] share a chromosome 2p21-p23 insertion on chromosome 7q35-q36, thereby interrupting the contactin-associated protein 2 gene (CNTNAP2). This gene encodes a membrane protein located in a specific compartment at the nodes of Ranvier of axons. We hypothesize that disruption or decreased expression of CNTNAP2 could lead to a disturbed distribution of the K(+) channels in the nervous system, thereby influencing conduction and/or repolarization of action potentials, causing unwanted actions or movements in GTS.

摘要

抽动秽语综合征(GTS)是一种散发性或遗传性的复杂神经精神障碍,其特征为不自主的运动和发声抽动。它常与强迫症和注意力缺陷多动障碍等疾病共病。到目前为止,连锁分析已指向多个染色体位置,但未能确定明确的候选基因。我们研究了一个患有涉及2号和7号染色体的复杂染色体插入/易位的GTS家系。患病父亲[46,XY,inv(2)(p23q22),ins(7;2)(q35-q36;p21p23)]和两个患病孩子[46,XX,der(7)ins(7;2)(q35-q36;p21p23)和46,XY,der(7)ins(7;2)(q35-q36;p213p23)]在7号染色体q35-q36上共享一个2号染色体p21-p23插入片段,从而中断了接触蛋白相关蛋白2基因(CNTNAP2)。该基因编码一种位于轴突郎飞结特定区域的膜蛋白。我们推测,CNTNAP2的破坏或表达降低可能导致神经系统中钾通道分布紊乱,从而影响动作电位的传导和/或复极化,在GTS中引发不必要的动作或运动。

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