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缺乏G蛋白Go的小鼠存在多种神经学异常。

Multiple neurological abnormalities in mice deficient in the G protein Go.

作者信息

Jiang M, Gold M S, Boulay G, Spicher K, Peyton M, Brabet P, Srinivasan Y, Rudolph U, Ellison G, Birnbaumer L

机构信息

Department of Anesthesiology, University of California, Los Angeles, CA 90095, USA.

出版信息

Proc Natl Acad Sci U S A. 1998 Mar 17;95(6):3269-74. doi: 10.1073/pnas.95.6.3269.

Abstract

The G protein Go is highly expressed in neurons and mediates effects of a group of rhodopsin-like receptors that includes the opioid, alpha2-adrenergic, M2 muscarinic, and somatostatin receptors. In vitro, Go is also activated by growth cone-associated protein of Mr 43,000 (GAP43) and the Alzheimer amyloid precursor protein, but it is not known whether this occurs in intact cells. To learn about the roles that Go may play in intact cells and whole body homeostasis, we disrupted the gene encoding the alpha subunits of Go in embryonic stem cells and derived Go-deficient mice. Mice with a disrupted alphao gene (alphao-/- mice) lived but had an average half-life of only about 7 weeks. No Goalpha was detectable in homogenates of alphao-/- mice by ADP-ribosylation with pertussis toxin. At the cellular level, inhibition of cardiac adenylyl cyclase by carbachol (50-55% at saturation) was unaffected, but inhibition of Ca2+ channel currents by opioid receptor agonist in dorsal root ganglion cells was decreased by 30%, and in 25% of the alphao-/- cells examined, the Ca2+ channel was activated at voltages that were 13.3 +/- 1.7 mV lower than in their counterparts. Loss of alphao was not accompanied by appearance of significant amounts of active free betagamma dimers (prepulse test). At the level of the living animal, Go-deficient mice are hyperalgesic (hot-plate test) and display a severe motor control impairment (falling from rotarods and 1-inch wide beams). In spite of this deficiency, alphao-/- mice are hyperactive and exhibit a turning behavior that has them running in circles for hours on end, both in cages and in open-field tests. Except for one, all alphao-/- mice turned only counterclockwise. These findings indicate that Go plays a major role in motor control, in motor behavior, and in pain perception and also predict involvement of Go in Ca2+ channel regulation by an unknown mechanism.

摘要

G蛋白Go在神经元中高度表达,并介导一组视紫红质样受体的效应,这些受体包括阿片受体、α2 - 肾上腺素能受体、M2毒蕈碱受体和生长抑素受体。在体外,Go还可被分子量为43,000的生长锥相关蛋白(GAP43)和阿尔茨海默病淀粉样前体蛋白激活,但尚不清楚这是否发生在完整细胞中。为了解Go在完整细胞和全身稳态中可能发挥的作用,我们破坏了胚胎干细胞中编码Goα亚基的基因,并培育出了Go缺陷小鼠。αo基因被破坏的小鼠(αo - / - 小鼠)存活下来,但平均半衰期仅约7周。用百日咳毒素进行ADP - 核糖基化后,在αo - / - 小鼠的匀浆中未检测到Goα。在细胞水平上,卡巴胆碱对心脏腺苷酸环化酶的抑制作用(饱和时为50 - 55%)不受影响,但阿片受体激动剂对背根神经节细胞Ca2 + 通道电流的抑制作用降低了30%,并且在25%的被检测αo - / - 细胞中,Ca2 + 通道在比对照细胞低13.3±1.7 mV的电压下被激活。αo的缺失并未伴随着大量活性游离βγ二聚体的出现(预脉冲试验)。在活体动物水平上,Go缺陷小鼠表现出痛觉过敏(热板试验)并表现出严重的运动控制障碍(从旋转杆和1英寸宽的横梁上掉落)。尽管存在这种缺陷,αo - / - 小鼠却表现出多动,并在笼子和旷场试验中都表现出一种转圈行为,它们会连续数小时不停地转圈。除了一只小鼠外,所有αo - / - 小鼠都只逆时针转动。这些发现表明Go在运动控制、运动行为和疼痛感知中起主要作用,并且还预示Go通过未知机制参与Ca2 + 通道调节。

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