Department of Biology, Brandeis University, Waltham, MA 02454.
Department of Biology, Brandeis University, Waltham, MA 02454
eNeuro. 2021 Jul 6;8(4). doi: 10.1523/ENEURO.0135-21.2021. Print 2021 Jul-Aug.
Pyramidal neurons in rodent visual cortex homeostatically maintain their firing rates within a target range. In young cultured rat cortical neurons, Ca/calmodulin-dependent kinase IV (CaMKIV) signaling jointly regulates excitatory synaptic strength and intrinsic excitability to allow neurons to maintain their target firing rate. However, the role of CaMKIV signaling in regulating synaptic strength and intrinsic excitability has not been tested. Here, we show that in pyramidal neurons in visual cortex of juvenile male and female mice, CaMKIV signaling is not essential for the maintenance of basal synaptic or intrinsic properties. Neither CaMKIV conditional knock-down nor viral expression of dominant negative CaMKIV (dnCaMKIV) disrupts the intrinsic excitability or synaptic input strength of pyramidal neurons in primary visual cortex (V1), and CaMKIV signaling is not required for the increase in intrinsic excitability seen following monocular deprivation (MD). Viral expression of constitutively active CaMKIV (caCaMKIV) causes a complex disruption of the neuronal input/output function but does not affect synaptic input strength. Taken together, these results demonstrate that although augmented CaMKIV signaling can alter neuronal excitability, either endogenous CaMKIV signaling is dispensable for maintenance of excitability, or impaired CaMKIV signaling is robustly compensated.
在啮齿动物视觉皮层中,锥体神经元在目标范围内维持其发放率的稳态。在年轻培养的大鼠皮质神经元中,Ca2+/钙调蛋白依赖性激酶 IV(CaMKIV)信号共同调节兴奋性突触强度和内在兴奋性,使神经元能够维持其目标发放率。然而,CaMKIV 信号在调节突触强度和内在兴奋性方面的作用尚未得到检验。在这里,我们发现在雄性和雌性幼年小鼠视觉皮层的锥体神经元中,CaMKIV 信号对于维持基础突触或内在特性不是必需的。CaMKIV 条件性敲低或显性负性 CaMKIV(dnCaMKIV)的病毒表达都不会破坏初级视觉皮层(V1)中锥体神经元的内在兴奋性或突触输入强度,而且 CaMKIV 信号对于单眼剥夺(MD)后观察到的内在兴奋性增加也不是必需的。组成型激活的 CaMKIV(caCaMKIV)的病毒表达会导致神经元输入/输出功能的复杂破坏,但不会影响突触输入强度。总之,这些结果表明,尽管增强的 CaMKIV 信号可以改变神经元的兴奋性,但内源性 CaMKIV 信号对于维持兴奋性不是必需的,或者受损的 CaMKIV 信号得到了强有力的补偿。