首页> 外文期刊>Neuropsychopharmacology >Conditional, inducible gene silencing in dopamine neurons reveals a sex-specific role for Rit2 GTPase in acute cocaine response and striatal function
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Conditional, inducible gene silencing in dopamine neurons reveals a sex-specific role for Rit2 GTPase in acute cocaine response and striatal function

机译:在多巴胺神经元中诱导诱导基因沉默揭示了急性可卡因响应和纹状体功能中RIT2 GTP酶的性别特异性作用

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Dopamine (DA) signaling is critical for movement, motivation, and addictive behavior. The neuronal GTPase, Rit2, is enriched in DA neurons (DANs), binds directly to the DA transporter (DAT), and is implicated in several DA-related neuropsychiatric disorders. However, it remains unknown whether Rit2 plays a role in either DAergic signaling and/or DA-dependent behaviors. Here we leveraged the TET-OFF system to conditionally silence Rit2 in Pitx3 ~(IRES2-tTA) mouse DANs. Following DAergic Rit2 knockdown (Rit2-KD), mice displayed an anxiolytic phenotype, with no change in baseline locomotion. Further, males exhibited increased acute cocaine sensitivity, whereas DAergic Rit2-KD suppressed acute cocaine sensitivity in females. DAergic Rit2-KD did not affect presynaptic TH and DAT protein levels in females, nor was TH was affected in males; however, DAT was significantly diminished in males. Paradoxically, despite decreased DAT levels in males, striatal DA uptake was enhanced, but was not due to enhanced DAT surface expression in either dorsal or ventral striatum. Finally, patch recordings in nucleus accumbens (NAcc) medium spiny neurons (MSNs) revealed reciprocal changes in spontaneous EPSP (sEPSP) frequency in male and female D1+ and D2+ MSNs following DAergic Rit2-KD. In males, sEPSP frequency was decreased in D1+, but not D2+, MSNs, whereas in females sEPSP frequency decreased in D2+, but not D1+, MSNs. Moreover, DAergic Rit2-KD abolished the ability of cocaine to reduce sEPSP frequency in D1+, but not D2+, male MSNs. Taken together, our studies are among the first to acheive AAV-mediated, conditional and inducible DAergic knockdown in vivo. Importantly, our results provide the first evidence that DAergic Rit2 expression differentially impacts striatal function and DA-dependent behaviors in males and females.
机译:多巴胺(DA)信令对于运动,动机和上瘾行为至关重要。神经元GTP酶的RIT2富集在DA神经元(DAN)中直接与DA转运蛋白(DAT)结合,并涉及几种与DA相关的神经精神疾病。然而,它仍然未知RIT2是否在DAIGIC信令和/或依赖行为中发挥作用。在这里,我们利用TET-OFF系统在PITX3〜(IRES2-TTA)鼠标丹的条件沉默RIT2。遵循Dakeric RIT2敲低(RIT2-KD),小鼠展示了抗焦虑表型,基线运动没有变化。此外,雄性表现出急性可卡因敏感性增加,而Daneric Rit2-Kd抑制了女性的急性可卡因敏感性。 Danergic Rit2-KD没有影响女性的突触前和DAT蛋白质水平,也不是男性的影响;但是,DAT在雄性中被显着减少。矛盾的是,尽管雄性中的DAT水平降低,因此增强了纹状体DA摄取,但不是由于背部或腹侧纹状体中的增强的DAT表面表达。最后,核常量(NACC)中刺(NACC)中刺的斑点(MSNS)揭示了在DAGIC rit2-Kd之后的雄性和雌性D1 +和D2 + MSN中自发EPSP(SEPSP)频率的互易变化。在雄性中,D1 +中的SEPSP频率降低,但不是D2 +,MSN,而在女性SEPSP频率下,D2 +下降,但不是D1 +,MSN。此外,DACaine在D1 +中减少了可卡因减少SEPSP频率的能力,而不是D2 +,雄性MSN。一起携带,我们的研究是第一个在体内实现AAV介导的,有条件和诱导的后果敲低。重要的是,我们的结果提供了第一种证据,即晚年的rit2表达差异地影响男性和女性的纹状体功能和da依赖行为。

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