DeFazio R Anthony, Moenter Suzanne M
Department of Internal Medicine, University of Virginia, Charlottesville, Virginia 22908-0578, USA.
Mol Endocrinol. 2002 Oct;16(10):2255-65. doi: 10.1210/me.2002-0155.
GnRH neurons are regulated by estradiol feedback through unknown mechanisms. Voltage-gated potassium channels determine the pattern of activity and response to synaptic inputs in many neurons. We used whole-cell patch-clamp to test whether estradiol feedback altered potassium currents in GnRH neurons. Adult mice were ovariectomized and some treated with estradiol implants to suppress reproductive neuroendocrine function; 1 wk later, brain slices were prepared for recording. Estradiol affected the amplitude, decay time, and the voltage dependence of both inactivation and activation of A-type potassium currents in these cells. Estradiol also altered a slowly inactivating current, I(K.) The estradiol-induced changes in I(A) contributed to marked changes in action potential properties. Estradiol increased excitability in GnRH neurons, decreasing both threshold and latency for action potential generation. To test whether estradiol altered phosphorylation of the channels or associated proteins, the broad-spectrum kinase inhibitor H7 was included in the recording pipette. H7 acutely reversed some but not all effects of estradiol on potassium currents. Estradiol did not affect I(A) or I(K) in paraventricular neurosecretory neurons, demonstrating a degree of specificity in these effects. Potassium channels are thus one target for estradiol regulation of GnRH neurons; this regulation involves changes in phosphorylation of potassium channel components.
促性腺激素释放激素(GnRH)神经元受雌二醇反馈调节,但其机制尚不清楚。电压门控钾通道决定了许多神经元的活动模式以及对突触输入的反应。我们采用全细胞膜片钳技术来检测雌二醇反馈是否会改变GnRH神经元中的钾电流。成年小鼠接受卵巢切除术,部分小鼠植入雌二醇以抑制生殖神经内分泌功能;1周后,制备脑片用于记录。雌二醇影响这些细胞中A型钾电流的幅度、衰减时间以及失活和激活的电压依赖性。雌二醇还改变了一种缓慢失活电流I(K)。雌二醇诱导的I(A)变化导致动作电位特性发生显著改变。雌二醇增加了GnRH神经元的兴奋性,降低了动作电位产生的阈值和潜伏期。为了检测雌二醇是否改变通道或相关蛋白的磷酸化,在记录电极内加入了广谱激酶抑制剂H7。H7可急性逆转雌二醇对钾电流的部分而非全部影响。雌二醇对室旁神经分泌神经元的I(A)或I(K)没有影响,表明这些作用具有一定的特异性。因此,钾通道是雌二醇调节GnRH神经元的一个靶点;这种调节涉及钾通道成分磷酸化的变化。