Bao S, Chen L, Qiao X, Knusel B, Thompson R F
Neuroscience Program, University of Southern California, Los Angeles 90089, USA.
Learn Mem. 1998 Sep-Oct;5(4-5):355-64.
In addition to their trophic functions, neurotrophins are also implicated in synaptic modulation and learning and memory. Although gene knockout techniques have been used widely in studying the roles of neurotrophins at molecular and cellular levels, behavioral studies using neurotrophin knockouts are limited by the early-onset lethality and various sensory deficits associated with the gene knockout mice. In the present study, we found that in a spontaneous mutant mouse, waggler, the expression of brain-derived neurotrophic factor (BDNF) was selectively absent in the cerebellar granule cells. The cytoarchitecture of the waggler cerebellum appeared to be normal at the light microscope level. The mutant mice exhibited no sensory deficits to auditory stimuli or heat-induced pain. However, they were massively impaired in classic eye-blink conditioning. These results suggest that BDNF may have a role in normal cerebellar neuronal function, which, in turn, is essential for classic eye-blink conditioning.
除了其营养功能外,神经营养因子还与突触调节以及学习和记忆有关。尽管基因敲除技术已广泛用于研究神经营养因子在分子和细胞水平上的作用,但使用神经营养因子敲除小鼠的行为研究受到与基因敲除小鼠相关的早发性致死率和各种感觉缺陷的限制。在本研究中,我们发现,在一种自发突变小鼠——摇摆鼠中,脑源性神经营养因子(BDNF)在小脑颗粒细胞中选择性缺失。在光学显微镜水平上,摇摆鼠小脑的细胞结构似乎正常。突变小鼠对听觉刺激或热诱导疼痛没有感觉缺陷。然而,它们在经典眨眼条件反射中严重受损。这些结果表明,BDNF可能在正常的小脑神经元功能中起作用,而这反过来又对经典眨眼条件反射至关重要。