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首页> 外文期刊>Brain research >Sex differences in GABA turnover and glutamic acid decarboxylase (GAD(65) and GAD(67)) mRNA in the rat hypothalamus.
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Sex differences in GABA turnover and glutamic acid decarboxylase (GAD(65) and GAD(67)) mRNA in the rat hypothalamus.

机译:大鼠下丘脑中GABA转换和谷氨酸脱羧酶(GAD(65)和GAD(67))mRNA的性别差异。

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GABAergic neurons are estimated to make up more than half of the neuronal population of the hypothalamus and they likely account for some of the structural and functional sexual dimorphisms observed in the mammalian brain. We previously reported sex differences in the rate of GABA turnover in discrete hypothalamic structures of adult rats. In the present study, we extended our search for sex differences in GABA turnover to additional structures, and further determined whether these differences were associated with differences in GAD(65) and or GAD(67) mRNA levels. Utilizing the GABA transaminase inhibition method, we determined GABA turnover in 14 microdissected brain regions. The rate of GABA turnover was about 2-fold greater in male than in diestrous day one (D(1)) female rats in the diagonal band of Broca at the level of the organum vasculosum of the lamina terminalis [DBB(ovlt)], anteroventral periventricular nucleus (AVPv), median eminence (ME), and dorsomedial portion of the ventromedial nucleus (VMNdm). A sex difference also was noted in the DBB(ovlt) for GAD(65) mRNA determined by microlysate RNase protection assay. Here, GAD(65) levels were almost 2-fold greater in male rats, which suggests that differences in the activity of this GAD enzyme isoform contributes to the difference in turnover in this area. Additionally, in the dorsomedial nucleus (DMN), the GAD(65) mRNA level was significantly higher in female rats, and in the medial amygdaloid nucleus (Am), GAD(67) mRNA was higher in male rats. These data reveal striking sexual dimorphisms in the rate of GABA turnover and in GAD mRNA levels in specific populations of hypothalamic GABAergic neurons. The functional relationships between these GABAergic neurons and sexually dimorphic phenotypes associated with these structures, such as gonadotropin secretion, reproductive behaviors, seizure threshold and others, warrant further investigation.
机译:据估计,GABA能神经元占下丘脑神经元总数的一半以上,它们很可能解释了哺乳动物大脑中观察到的某些结构性和功能性二态性。我们以前曾报道成年大鼠下丘脑离散结构中GABA转换速率的性别差异。在本研究中,我们将GABA转换中性别差异的搜索扩展到其他结构,并进一步确定这些差异是否与GAD(65)和GAD(67)mRNA水平的差异相关。利用GABA转氨酶抑制方法,我们确定了14个显微解剖的大脑区域的GABA转化率。雄性大鼠的GABA转化率比末日(D(1))雌性大鼠的Broca对角带中终板的器官管水平[DBB(ovlt)]高出约2倍,腹膜前核(AVPv),中位隆起(ME)和腹侧核的背侧部分(VMNdm)。通过微裂解液RNase保护试验确定的GAD(65)mRNA的DBB(ovlt)也存在性别差异。在这里,雄性大鼠的GAD(65)水平几乎高出2倍,这表明该GAD酶同工酶活性的差异导致了该区域营业额的差异。此外,在背髓核(DMN)中,雌性大鼠的GAD(65)mRNA水平显着较高,而在内侧杏仁核(Am)中,雄性大鼠的GAD(67)mRNA较高。这些数据揭示了在下丘脑GABA能神经元的特定人群中GABA转换率和GAD mRNA水平存在明显的性二态性。这些GABA能神经元和与这些结构相关的性双态表型之间的功能关系,例如促性腺激素分泌,生殖行为,癫痫发作阈值等,需要进一步研究。

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