Terry-Lorenzo Ryan T, Carmody Leigh C, Voltz James W, Connor John H, Li Shi, Smith F Donelson, Milgram Sharon L, Colbran Roger J, Shenolikar Shirish
Department of Pharmacology and Cancer Biology, Duke University Medical Center, Durham, North Carolina 27710, USA.
J Biol Chem. 2002 Aug 2;277(31):27716-24. doi: 10.1074/jbc.M203365200. Epub 2002 May 16.
Neurabins are protein phosphatase-1 (PP1) targeting subunits that are highly concentrated in dendritic spines and post-synaptic densities. Immunoprecipitation of neurabin I and neurabin II/spinophilin from rat brain extracts sedimented PP1gamma1 and PP1alpha but not PP1beta. In vitro studies showed that recombinant peptides representing central regions of neurabins also preferentially bound PP1gamma1 and PP1alpha from brain extracts and associated poorly with PP1beta. Analysis of PP1 binding to chimeric neurabins suggested that sequences flanking a conserved PP1-binding motif altered their selectivity for PP1beta and their activity as regulators of PP1 in vitro. Assays using recombinant PP1 catalytic subunits and a chimera of PP1 and protein phosphatase-2A indicated that the C-terminal sequences unique to the PP1 isoforms contributed to their recognition by neurabins. Collectively, the results from several different in vitro assays established the rank order of PP1 isoform selection by neurabins to be PP1gamma1 > PP1alpha > PP1beta. This PP1 isoform selectivity was confirmed by immunoprecipitation of neurabin I and II from brain extracts from wild type and mutant PP1gamma null mice. In the absence of PP1gamma1, both neurabins showed enhanced association with PP1alpha but not PP1beta. These studies identified some of the structural determinants in PP1 and neurabins that together contribute to preferential targeting of PP1gamma1 and PP1alpha to the mammalian synapse.
神经结合蛋白是靶向蛋白磷酸酶-1(PP1)的亚基,高度集中于树突棘和突触后致密区。从大鼠脑提取物中免疫沉淀神经结合蛋白I和神经结合蛋白II/亲棘蛋白,沉淀出PP1γ1和PP1α,但未沉淀出PP1β。体外研究表明,代表神经结合蛋白中心区域的重组肽也优先结合脑提取物中的PP1γ1和PP1α,与PP1β的结合较差。对PP1与嵌合神经结合蛋白结合的分析表明,保守的PP1结合基序两侧的序列改变了它们对PP1β的选择性及其作为PP1体外调节剂的活性。使用重组PP1催化亚基以及PP1和蛋白磷酸酶-2A嵌合体的实验表明,PP1同工型特有的C末端序列有助于神经结合蛋白对它们的识别。总体而言,几种不同体外实验的结果确定了神经结合蛋白选择PP1同工型的顺序为PP1γ1>PP1α>PP1β。从野生型和突变型PP1γ基因敲除小鼠的脑提取物中免疫沉淀神经结合蛋白I和II,证实了这种PP1同工型选择性。在没有PP1γ1的情况下,两种神经结合蛋白与PP1α的结合均增强,但与PP1β的结合未增强。这些研究确定了PP1和神经结合蛋白中的一些结构决定因素,它们共同促成PP1γ1和PP1α优先靶向哺乳动物突触。