首页> 美国卫生研究院文献>The Journal of Physiology >Postsynaptic density-95 scaffolding of Shaker-type K+ channels in smooth muscle cells regulates the diameter of cerebral arteries
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Postsynaptic density-95 scaffolding of Shaker-type K+ channels in smooth muscle cells regulates the diameter of cerebral arteries

机译:突触后密度-95的平滑肌细胞中的摇床型K +通道的脚手架调节脑动脉的直径。

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摘要

Non-technical summaryShaker-type potassium channels are found on the smooth muscle cells of blood vessels in the brain and are important in keeping the blood vessels open or dilated. We show that a protein called PSD95, previously found in nerve cells, interacts with these potassium channels. PSD95 may act as a scaffold to ensure that the potassium channels are expressed in adequate numbers and in the right location on the smooth muscle cells. When we reduced the number of PSD95 proteins, we saw that the potassium channels were also reduced and the blood vessels were not as dilated compared to blood vessels with normal amounts of PSD95. This research may help us understand how abnormal constriction of blood vessels in the brain occurs in diseases such as high blood pressure and stroke.
机译:非技术摘要摇动型钾通道存在于大脑血管的平滑肌细胞中,对保持血管开放或扩张很重要。我们显示,先前在神经细胞中发现的称为PSD95的蛋白质​​与这些钾通道相互作用。 PSD95可以充当支架,以确保钾通道以足够数量且在平滑肌细胞上的正确位置表达。当我们减少PSD95蛋白的数量时,我们发现钾通道也减少了,并且与具有正常PSD95量的血管相比,血管的扩张程度没有那么大。这项研究可以帮助我们了解在高血压和中风等疾病中大脑血管的异常收缩是如何发生的。

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