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血管加压素神经元中神经元活动调节的五聚体蛋白的活性依赖性分泌进入体循环。

Activity-dependent secretion of neuronal activity regulated pentraxin from vasopressin neurons into the systemic circulation.

作者信息

Reti I M, Miskimon M, Dickson M, Petralia R S, Takamiya K, Bland R, Saini J, During M J, Huganir R L, Baraban J M

机构信息

Department of Psychiatry and Behavioral Sciences, Johns Hopkins University, Baltimore, MD 21205, USA.

出版信息

Neuroscience. 2008 Jan 24;151(2):352-60. doi: 10.1016/j.neuroscience.2007.10.040. Epub 2007 Nov 12.

Abstract

Neuronal activity regulated pentraxin (Narp) is a secreted, synaptic protein that has been implicated in modulating synaptic transmission. However, it is unclear how Narp secretion is regulated. Since we noted prominent Narp immunostaining in vasopressin neurons of the hypothalamus and in the posterior pituitary, we assessed whether it, like vasopressin, is released into the systemic circulation in an activity-dependent fashion. Consistent with this hypothesis, electron microscopic studies of the posterior pituitary demonstrated that Narp is located in secretory vesicles containing vasopressin. Using affinity chromatography, we detected Narp in plasma and found that these levels are markedly decreased by hypophysectomy. In addition, we confirmed that injection of a viral Narp construct into the hypothalamus restores plasma Narp levels in Narp knockout mice. In checking for activity-dependent secretion of Narp from the posterior pituitary, we found that several stimuli known to trigger vasopressin release, i.e. hypovolemia, dehydration and endotoxin, elevate plasma Narp levels. Taken together, these findings provide compelling evidence that Narp is secreted from vasopressin neurons in an activity-dependent fashion.

摘要

神经元活性调节五聚体蛋白(Narp)是一种分泌型突触蛋白,与调节突触传递有关。然而,目前尚不清楚Narp的分泌是如何调控的。由于我们注意到下丘脑加压素神经元和垂体后叶中有显著的Narp免疫染色,因此我们评估了它是否像加压素一样,以活动依赖的方式释放到体循环中。与这一假设一致,垂体后叶的电子显微镜研究表明,Narp位于含有加压素的分泌小泡中。通过亲和层析,我们在血浆中检测到了Narp,并发现垂体切除术后这些水平显著降低。此外,我们证实向下丘脑注射病毒Narp构建体可恢复Narp基因敲除小鼠的血浆Narp水平。在检查垂体后叶Narp的活动依赖型分泌时,我们发现几种已知能触发加压素释放的刺激,即血容量减少、脱水和内毒素,会提高血浆Narp水平。综上所述,这些发现提供了令人信服的证据,表明Narp以活动依赖的方式从加压素神经元分泌。

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