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Pre-clinical symptoms of SBMA may not be androgen-dependent: implications from two SBMA mouse models

机译:SBMA的临床前症状可能不是雄激素依赖性的:两种SBMA小鼠模型的影响

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摘要

A distinguishing aspect of spinal and bulbar muscular atrophy (SBMA) is its androgen-dependence, possibly explaining why only males are clinically affected. This disease, which impairs neuromuscular function, is linked to a polyglutamine expansion mutation in the androgen receptor (AR). In mouse models of SBMA, motor dysfunction is associated with pronounced defects in neuromuscular transmission, including defects in evoked transmitter release (quantal content, QC) and fiber membrane excitability (based on the resting membrane potential, RMP). However, whether such defects are androgen-dependent is unknown. Thus, we recorded synaptic potentials intracellularly from adult muscle fibers of transgenic (Tg) AR97Q male mice castrated pre-symptomatically. Although castration largely protects both QC and the RMP of fibers, correlating with the protective effect of castration on motor function, significant deficits in QC and RMP remained. Surprisingly, comparable defects in QC and RMP were also observed in pre-symptomatic AR97Q males, indicating that such defects emerge early and are pre-clinical. Exposing asymptomatic Tg females to androgens also induces both motor dysfunction and comparable defects in QC and RMP. Notably, asymptomatic Tg females also showed significant deficits in QC and RMP, albeit less severe, supporting their pre-clinical nature, but also raising questions about the androgen-dependence of pre-clinical symptoms. In summary, current evidence indicates that disease progression depends on androgens, but early pathogenic events may be triggered by the mutant AR allele independent of androgens. Such early, androgen-independent disease mechanisms may also be relevant to females carrying the SBMA allele.
机译:脊髓和延髓性肌萎缩症(SBMA)的一个显着方面是其雄激素依赖性,这可能解释了为什么只有男性受到临床影响。这种损害神经肌肉功能的疾病与雄激素受体(AR)中的聚谷氨酰胺扩展突变有关。在SBMA小鼠模型中,运动功能障碍与神经肌肉传递的明显缺陷有关,包括诱发的递质释放缺陷(含量,QC)和纤维膜兴奋性(基于静止膜电位,RMP)。但是,这种缺陷是否是雄激素依赖性的尚不清楚。因此,我们记录了从有症状地cast割的转基因(Tg)AR97Q雄性小鼠的成年肌纤维在细胞内的突触电位。尽管去势在很大程度上保护了纤维的QC和​​RMP,并与去势对运动功能的保护作用相关,但在QC和RMP方面仍存在明显缺陷。出乎意料的是,在症状前的AR97Q男性中也观察到了类似的QC和RMP缺陷,表明此类缺陷较早出现并且是临床前的。将无症状的Tg雌性暴露于雄激素也会诱发运动功能障碍和QC和RMP中的类似缺陷。值得注意的是,无症状的Tg雌性也表现出QC和RMP的明显缺陷,尽管严重程度较轻,支持其临床前特征,但也引起了对临床前症状的雄激素依赖性的质疑。总而言之,目前的证据表明疾病的进展取决于雄激素,但是早期的致病事件可能是由独立于雄激素的突变AR等位基因触发的。这种早期的雄激素非依赖性疾病机制也可能与携带SBMA等位基因的女性有关。

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