von Hehn Christian A A, Bhattacharjee Arin, Kaczmarek Leonard K
Department of Pharmacology, Yale University School of Medicine, New Haven, Connecticut 06520, USA.
J Neurosci. 2004 Feb 25;24(8):1936-40. doi: 10.1523/JNEUROSCI.4554-03.2004.
The promoter for the kv3.1 potassium channel gene is regulated by a Ca2+-cAMP responsive element, which binds the transcription factor cAMP response element-binding protein (CREB). Kv3.1 is expressed in a tonotopic gradient within the medial nucleus of the trapezoid body (MNTB) of the auditory brainstem, where Kv3.1 levels are highest at the medial end, which corresponds to high auditory frequencies. We have compared the levels of Kv3.1, CREB, and the phosphorylated form of CREB (pCREB) in a mouse strain that maintains good hearing throughout life, CBA/J (CBA), with one that suffers early cochlear hair cell loss, C57BL/6 (BL/6). A gradient of Kv3.1 immunoreactivity in the MNTB was detected in both young (6 week) and older (8 month) CBA mice. Although no gradient of CREB was detected, pCREB-immunopositive cells were grouped together in distinct clusters along the tonotopic axis. The same pattern of Kv3.1, CREB, and pCREB localization was also found in young BL/6 mice at a time (6 weeks) when hearing is normal. In contrast, at 8 months, when hearing is impaired, the gradient of Kv3.1 was abolished. Moreover, in the older BL/6 mice there was a decrease in CREB expression along the tonotopic axis, and the pattern of pCREB labeling appeared random, with no discrete clusters of pCREB-positive cells along the tonotopic axis. Our findings are consistent with the hypothesis that ongoing activity in auditory brainstem neurons is necessary for the maintenance of Kv3.1 tonotopicity through the CREB pathway.
钾离子通道基因kv3.1的启动子受Ca2+ - cAMP反应元件调控,该元件可结合转录因子cAMP反应元件结合蛋白(CREB)。Kv3.1在听觉脑干梯形体内侧核(MNTB)中呈音频拓扑梯度表达,在内侧端Kv3.1水平最高,对应高听觉频率。我们比较了终生保持良好听力的小鼠品系CBA/J(CBA)和早期出现耳蜗毛细胞损失的小鼠品系C57BL/6(BL/6)中Kv3.1、CREB及CREB磷酸化形式(pCREB)的水平。在年轻(6周)和年老(8个月)的CBA小鼠中均检测到MNTB中Kv3.1免疫反应性梯度。虽然未检测到CREB梯度,但pCREB免疫阳性细胞沿音频拓扑轴聚集在不同的簇中。在听力正常的6周龄年轻BL/6小鼠中也发现了相同的Kv3.1、CREB和pCREB定位模式。相反,在8个月龄听力受损时,Kv3.1梯度消失。此外,在年老BL/6小鼠中,沿音频拓扑轴CREB表达减少,pCREB标记模式显得随机,沿音频拓扑轴没有离散的pCREB阳性细胞簇。我们的研究结果与以下假设一致:听觉脑干神经元的持续活动对于通过CREB途径维持Kv3.1音频拓扑性是必要的。