Carmody Leigh C, Bauman Patricia A, Bass Martha A, Mavila Nirmala, DePaoli-Roach Anna A, Colbran Roger J
Department of Molecular Physiology and Biophysics, The Center for Molecular Neuroscience, and The Vanderbilt Kennedy Center for Research on Human Development, Vanderbilt University School of Medicine, Nashville, Tennessee 37232-0615, USA.
J Biol Chem. 2004 May 21;279(21):21714-23. doi: 10.1074/jbc.M402261200. Epub 2004 Mar 11.
Protein phosphatase-1 (PP1) catalytic subunit isoforms interact with diverse proteins, typically containing a canonical (R/K)(V/I)XF motif. Despite sharing approximately 90% amino acid sequence identity, PP1beta and PP1gamma1 have distinct subcellular localizations that may be determined by selective interactions with PP1-binding proteins. Immunoprecipitation studies from brain and muscle extracts demonstrated that PP1gamma1 selectively interacts with spinophilin and neurabin, F-actin-targeting proteins, whereas PP1beta selectively interacted with G(M)/R(GL), the striated-muscle glycogen-targeting subunit. Glutathione S-transferase (GST) fusion proteins containing residues 146-493 of neurabin (GST-Nb-(146-493)) or residues 1-240 of G(M)/R(GL) (GST-G(M)-(1-240)) recapitulated these isoform selectivities in binding and phosphatase activity inhibition assays. Site-directed mutagenesis indicated that this isoform selectivity was not due to sequence differences between the canonical PP1-binding motifs (neurabin, (457)KIKF(460); G(M)/R(GL), (65)RVSF(68)). A chimeric GST fusion protein containing residues 1-64 of G(M)/R(GL) fused to residues 457-493 of neurabin (GST-G(M)/Nb) selectively bound to and inhibited PP1gamma1, whereas a GST-Nb/G(M) chimera containing Nb-(146-460) fused to G(M)-(69-240) selectively interacted with and weakly inhibited PP1beta, implicating domain(s) C-terminal to the (R/K)(V/I)XF motif as determinants of PP1 isoform selectivity. Deletion of Pro(464) and Ile(465) in neurabin (deltaPI) to equally space a conserved cluster of amino acids from the (R/K)(V/I)XF motif as in G(M)/R(GL) severely compromised the ability of neurabin to bind and inhibit both isoforms but did not affect PP1gamma1 selectivity. Further analysis of a series of C-terminal truncated GST-Nb-(146-493) proteins identified residues 473-479 of neurabin as containing a crucial PP1gamma1-selectivity determinant. In combination, these data identify a novel PP1gamma1-selective interaction domain in neurabin that may allow for selective regulation and/or subcellular targeting of PP1 isoforms.
蛋白磷酸酶-1(PP1)催化亚基异构体与多种蛋白质相互作用,这些蛋白质通常含有一个典型的(R/K)(V/I)XF基序。尽管PP1β和PP1γ1的氨基酸序列同一性约为90%,但它们具有不同的亚细胞定位,这可能由与PP1结合蛋白的选择性相互作用决定。来自脑和肌肉提取物的免疫沉淀研究表明,PP1γ1与亲嗜素和神经肌动蛋白(F-肌动蛋白靶向蛋白)选择性相互作用,而PP1β与G(M)/R(GL)(横纹肌糖原靶向亚基)选择性相互作用。含有神经肌动蛋白146 - 493位残基的谷胱甘肽S-转移酶(GST)融合蛋白(GST-Nb-(146 - 493))或G(M)/R(GL)1 - 240位残基的GST融合蛋白(GST-G(M)-(1 - 240))在结合和磷酸酶活性抑制试验中重现了这些异构体选择性。定点诱变表明,这种异构体选择性并非由于典型PP1结合基序(神经肌动蛋白,(457)KIKF(460);G(M)/R(GL),(65)RVSF(68))之间的序列差异。一种含有G(M)/R(GL)1 - 64位残基与神经肌动蛋白457 - 493位残基融合的嵌合GST融合蛋白(GST-G(M)/Nb)选择性结合并抑制PP1γ1,而一种含有Nb-(146 - 460)与G(M)-(69 - 240)融合的GST-Nb/G(M)嵌合体选择性与PP1β相互作用并微弱抑制PP1β,这表明(R/K)(V/I)XF基序C端的结构域是PP1异构体选择性的决定因素。在神经肌动蛋白中缺失Pro(464)和Ile(465)(δPI)以使一个保守的氨基酸簇与(R/K)(V/I)XF基序的间距与G(M)/R(GL)中的相同,这严重损害了神经肌动蛋白结合和抑制两种异构体的能力,但不影响PP1γ1的选择性。对一系列C端截短的GST-Nb-(146 - 493)蛋白的进一步分析确定神经肌动蛋白的473 - 479位残基含有一个关键的PP1γ1选择性决定因素。综合这些数据,确定了神经肌动蛋白中一个新的PP1γ1选择性相互作用结构域,它可能允许对PP1异构体进行选择性调节和/或亚细胞靶向定位。