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磷酸酶的下降导致与衰老相关的神经丝过度磷酸化。

Declining phosphatases underlie aging-related hyperphosphorylation of neurofilaments.

机构信息

Center for Dementia Research, Nathan Kline Institute for Psychiatric Research, Orangeburg, NY 10962, United States; Department of Psychiatry, New York University School of Medicine, New York, NY 10016, United States.

出版信息

Neurobiol Aging. 2011 Nov;32(11):2016-29. doi: 10.1016/j.neurobiolaging.2009.12.001. Epub 2009 Dec 23.

Abstract

Cytoskeletal protein phosphorylation is frequently altered in neuropathologic states but little is known about changes during normal aging. Here we report that declining protein phosphatase activity, rather than activation of kinases, underlies aging-related neurofilament hyperphosphorylation. Purified PP2A or PP2B dephosphorylated the heavy neurofilament (NFH) subunit or its extensively phorphorylated carboxyl-terminal domain in vitro. In cultured primary hippocampal neurons, inhibiting either phosphatase induced NFH phosphorylation without activating known neurofilament kinases. Neurofilament phosphorylation in the mouse CNS, as reflected by levels of the RT-97 phosphoepitope associated with late axon maturation, more than doubled during the 12-month period after NFH expression plateaued at p21. This was accompanied by declines in levels and activity of PP2A but not PP2B, and no rise in activities of neurofilament kinases (Erk1,2, cdk5 and JNK1,2). Inhibiting PP2A in mice in vivo restored brain RT-97 to levels seen in young mice. Declining PP2A activity, therefore, can account for rising neurofilament phosphorylation in maturing brain, potentially compounding similar changes associated with adult-onset neurodegenerative diseases.

摘要

细胞骨架蛋白磷酸化在神经病理学状态中经常改变,但在正常衰老过程中发生的变化知之甚少。在这里,我们报告说,与衰老相关的神经丝过度磷酸化是由蛋白磷酸酶活性下降引起的,而不是激酶的激活。纯化的 PP2A 或 PP2B 在体外使重神经丝(NFH)亚基或其广泛磷酸化的羧基末端结构域去磷酸化。在培养的原代海马神经元中,抑制任何一种磷酸酶都会导致 NFH 磷酸化,而不会激活已知的神经丝激酶。在 NFH 表达在 p21 达到平台期后的 12 个月内,与晚期轴突成熟相关的 RT-97 磷酸化表位水平反映的小鼠中枢神经系统中的神经丝磷酸化增加了一倍以上。这伴随着 PP2A 水平和活性的下降,但 PP2B 活性没有上升,神经丝激酶(Erk1、2、cdk5 和 JNK1、2)的活性也没有上升。在体内抑制小鼠中的 PP2A 将脑 RT-97 恢复到年轻小鼠的水平。因此,PP2A 活性的下降可能导致成熟大脑中神经丝磷酸化的增加,这可能会加剧与成人发病的神经退行性疾病相关的类似变化。

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