Kitazawa H, Katoh A, Yagi T, Nagao S
Department of Physiology, Jichi Medical School, Yakushiji 3311, Minamikawachi, Tochigi, Japan.
Neurosci Lett. 2000 Feb 25;280(3):179-82. doi: 10.1016/s0304-3940(00)00779-5.
Fyn-kinase is expressed widely in the entire brain, including the cerebellum. Fyn-kinase-deficient mice are known to exhibit hypersensitivity to ethanol. To evaluate the cerebellar functions of Fyn-kinase, we examined the dynamic characteristics of the horizontal optokinetic response (HOKR) and vestibulo-ocular reflex (HVOR) and its adaptability in Fyn-kinase-deficient mice. The HOKR was induced by sinusoidal oscillation of a checkered screen and the HVOR was induced by sinusoidal oscillation of a turntable in darkness. The HOKR gains of mutant mice were higher than those of the wild-type mice, and the HVOR phases of mutant mice were less advanced than those of the wild-type mice. However, no difference was noted in the adaptability of the HOKR induced by 1 h of sustained screen oscillation between the mutant and wild-type mice. The cerebellar functions appear to be unaffected by Fyn-kinase knockout.
Fyn激酶在包括小脑在内的整个大脑中广泛表达。已知Fyn激酶缺陷型小鼠对乙醇表现出超敏反应。为了评估Fyn激酶的小脑功能,我们检测了Fyn激酶缺陷型小鼠水平视动反应(HOKR)和前庭眼反射(HVOR)的动态特征及其适应性。HOKR由棋盘格屏幕的正弦振荡诱发,HVOR由黑暗中转盘的正弦振荡诱发。突变小鼠的HOKR增益高于野生型小鼠,突变小鼠的HVOR相位比野生型小鼠滞后。然而,在持续1小时的屏幕振荡诱发的HOKR适应性方面,突变小鼠和野生型小鼠之间没有差异。小脑功能似乎不受Fyn激酶基因敲除的影响。