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CRISPR knockdown of Kcnq3 attenuates the M-current and increases excitability of NPY/AgRP neurons to alter energy balance

机译:KCNQ3的CRISPR敲低衰减了M-Current并提高了NPY / AGRP神经元的兴奋性以改变能量平衡

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Objective Arcuate nucleus neuropeptide Y/agouti-related peptide (NPY/AgRP) neurons drive ingestive behavior. The M-current, a subthreshold non-inactivating potassium current, plays a critical role in regulating NPY/AgRP neuronal excitability. Fasting decreases while 17β-estradiol increases the M-current by regulating the mRNA expression of Kcnq2 , 3 , and 5 (Kv7.2, 3, and 5) channel subunits. Incorporating KCNQ3 into heteromeric channels has been considered essential to generate a robust M-current. Therefore, we investigated the behavioral and physiological effects of selective Kcnq3 deletion from NPY/AgRP neurons. Methods We used a single adeno-associated viral vector containing a recombinase-dependent Staphylococcus aureus Cas9 with a single-guide RNA to selectively delete Kcnq3 in NPY/AgRP neurons. Single-cell quantitative measurements of mRNA expression and whole-cell patch clamp experiments were conducted to validate the selective knockdown. Body weight, food intake, and locomotor activity were measured in male mice to assess disruptions in energy balance. Results The virus reduced the expression of Kcnq3 mRNA without affecting Kcnq2 or Kcnq5 . The M-current was attenuated, causing NPY/AgRP neurons to be more depolarized, exhibit a higher input resistance, and require less depolarizing current to fire action potentials, indicative of increased excitability. Although the resulting decrease in the M-current did not overtly alter ingestive behavior, it significantly reduced the locomotor activity as measured by open-field testing. Control mice on a high-fat diet exhibited an enhanced M-current and increased Kcnq2 and Kcnq3 expression, but the M-current remained significantly attenuated in KCNQ3 knockdown animals. Conclusions The M-current plays a critical role in modulating the intrinsic excitability of NPY/AgRP neurons that is essential for maintaining energy homeostasis.
机译:目标弧形核神经肽Y / Agouti相关肽(NPY / AGRP)神经元驱动摄取行为。 M-Current,亚阈值非灭活钾电流,在调节NPY / AGRP神经元兴奋性方面发挥着关键作用。通过调节KCNQ2,3和5(KV7.2,3和5)通道亚基的mRNA表达,禁食减少而17β-雌二醇增加M-Currow。将KCNQ3掺入异统通道被认为是必不可少的,以产生坚固的M电流。因此,我们研究了从NPY / AGRP神经元选择性KCNQ3缺失的行为和生理学效应。方法使用含有具有单引导RNA的重组酶依赖性金黄色葡萄球菌Cas9的单个腺嘌呤相关病毒载体,以在NPY / AgRP神经元中选择性地删除KCNQ3。进行MRNA表达和全细胞膜片钳位实验的单细胞定量测量以验证选择性敲低。在雄性小鼠中测量体重,食物摄入和运动活性,以评估能量平衡的破坏。结果病毒降低了KCNQ3 mRNA的表达而不影响KCNQ2或KCNQ5。衰减M电流,导致NPY / AgRP神经元更加偏振,表现出更高的输入电阻,并且需要更少地降低电流以对火动作用电势进行降低,表明兴奋性增加。尽管M-Current的导出降低没有明显改变摄取行为,但是通过开放式测试测量的运动活性显着降低了运动活动。对照小鼠在高脂饮食上表现出增强的M-Current和kCNQ2和KCNQ3表达增加,但在KCNQ3敲除动物中,M-电流保持显着减弱。结论M-电流在调节NPY / AGRP神经元的内在兴奋方面发挥着关键作用,这对于维持能量稳态至关重要。

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