Hernandez A Ivan, Blace Nancy, Crary John F, Serrano Peter A, Leitges Michael, Libien Jenny M, Weinstein Gila, Tcherapanov Andrew, Sacktor Todd Charlton
Department of Physiology, State University of New York Downstate Medical Center, Brooklyn, 11203, USA.
J Biol Chem. 2003 Oct 10;278(41):40305-16. doi: 10.1074/jbc.M307065200. Epub 2003 Jul 11.
Protein kinase M zeta (PKM zeta) is a newly described form of PKC that is necessary and sufficient for the maintenance of hippocampal long term potentiation (LTP) and the persistence of memory in Drosophila. PKM zeta is the independent catalytic domain of the atypical PKC zeta isoform and produces long term effects at synapses because it is persistently active, lacking autoinhibition from the regulatory domain of PKC zeta. PKM has been thought of as a proteolytic fragment of PKC. Here we report that brain PKM zeta is a new PKC isoform, synthesized from a PKM zeta mRNA encoding a PKC zeta catalytic domain without a regulatory domain. Multiple zeta-specific antisera show that PKM zeta is expressed in rat forebrain as the major form of zeta in the near absence of full-length PKC zeta. A PKC zeta knockout mouse, in which the regulatory domain was disrupted and catalytic domain spared, still expresses brain PKM zeta, indicating that this form of PKM is not a PKC zeta proteolytic fragment. Furthermore, the distribution of brain PKM zeta does not correlate with PKC zeta mRNA but instead with an alternate zeta RNA transcript thought incapable of producing protein. In vitro translation of this RNA, however, generates PKM zeta of the same molecular weight as that in brain. Metabolic labeling of hippocampal slices shows increased de novo synthesis of PKM zeta in LTP. Because PKM zeta is a kinase synthesized in an autonomously active form and is necessary and sufficient for maintaining LTP, it serves as an example of a link coupling gene expression directly to synaptic plasticity.
蛋白激酶Mζ(PKMζ)是蛋白激酶C(PKC)新发现的一种形式,对于维持海马体长期增强效应(LTP)以及果蝇记忆的持久性而言,它是必需且充分的。PKMζ是非典型PKCζ亚型的独立催化结构域,因其持续激活且缺乏PKCζ调节结构域的自身抑制作用,所以能在突触处产生长期效应。PKM曾被认为是PKC的蛋白水解片段。在此我们报告,脑内PKMζ是一种新的PKC亚型,由编码无调节结构域的PKCζ催化结构域的PKMζ信使核糖核酸(mRNA)合成。多种ζ特异性抗血清显示,PKMζ在大鼠前脑表达,在几乎没有全长PKCζ的情况下,它是ζ的主要形式。一种PKCζ基因敲除小鼠,其调节结构域被破坏而催化结构域保留,仍能表达脑内PKMζ,这表明这种形式的PKM不是PKCζ的蛋白水解片段。此外,脑内PKMζ的分布与PKCζ mRNA不相关,而是与一种被认为无法产生蛋白质的替代性ζ核糖核酸转录本相关。然而,这种核糖核酸的体外翻译产生的PKMζ分子量与脑内的相同。海马体切片的代谢标记显示,在LTP中PKMζ的从头合成增加。由于PKMζ是以自主激活形式合成的激酶,对于维持LTP是必需且充分条件,它是直接将基因表达与突触可塑性联系起来的一个例子。