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首页> 外文期刊>Cellular Signalling >H-1 NMR structural and functional characterisation of a cAMP-specific phosphodiesterase-4D5 (PDE4D5) N-terminal region peptide that disrupts PDE4D5 interaction with the signalling scaffold proteins, arrestin and RACK1
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H-1 NMR structural and functional characterisation of a cAMP-specific phosphodiesterase-4D5 (PDE4D5) N-terminal region peptide that disrupts PDE4D5 interaction with the signalling scaffold proteins, arrestin and RACK1

机译:H-1 NMR的cAMP特异性磷酸二酯酶4D5(PDE4D5)N端区域肽的结构和功能表征,可破坏PDE4D5与信号支架蛋白,抑制蛋白和RACK1的相互作用

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The unique 88 amino acid N-terminal region of cAMP-specific phosphodiesterase-4D5 (PDE4D5) contains overlapping binding sites conferring interaction with the signaling scaffold proteins, beta arrestin and RACK1. A 38-mer peptide, whose sequence reflected residues 12 through 49 of PDE4D5. encompasses the entire N-terminal RACK1 Interaction Domain (RAID1) together with a portion of the beta arrestin binding site. H-1 NMR and CD analyses indicate that this region has propensity to form a helical structure. The leucine-rich hydrophobic grouping essential for RACK1 interaction forms a discrete hydrophobic ridge located along a single face of an amphipathic a-helix with Arg34 and Asn36, which also play important roles in RACK1 binding. The Asn22/Pro23/Trp24/Asn26 grouping, essential for RACK1 interaction, was located at the N-terminal head of the amphipathic helix that contained the hydrophobic ridge. RAID1 is thus provided by a distinct amphipathic helical structure. We suggest that the binding of PDE4D5 to the WD-repeat protein, RACK1, may occur in a manner akin to the helix-helix interaction shown for G gamma binding to the WD-repeat protein, G beta. A more extensive section of the PDE4D5 N-terminal sequence (Thr1 1-Ala85) is involved in (beta arrestin binding. Several residues within the RAID1 helix contribute to this interaction however. We show here that these residues form a focused band around the centre of the RAID1 helix, generating a hydrophobic patch (from Leu29, Val30 and Leu33) flanked by polar/charged residues (Asn26, Glu27, Asp28. Arg34). The interaction with beta arrestin exploits a greater circumference on the RAID] helix, and involves two residues (Glu27, Asp28) that do not contribute to RACK1 binding. In contrast, the interaction of RACK1 with RAID1 is extended over a greater length of the helix and includes Leu37/Leu38, which do not contribute to beta arrestin binding. A membrane-permeable, stearoylated Val12-Ser49 38-mer peptide disrupted the interaction of both beta arrestin and RACK1 with endogenous PDE4D5 in HEKB2 cells, whilst a cognate peptide with a Glu27Ala substitution selectively failed to disrupt PDE4D5/RACK1 interaction. The stearoylated Val12-Ser49 38-mer peptide enhanced the isoprenaline-stimulated PKA phosphorylation of the beta 2-adrenergic receptors (beta 2AR) and its activation of ERK, whilst the Glu27Ala peptide was ineffective in both these regards. (C) 2007 Elsevier Inc. All rights reserved.
机译:cAMP特异性磷酸二酯酶4D5(PDE4D5)的独特的88个氨基酸的N端区域包含重叠的结合位点,赋予了与信号支架蛋白,β抑制蛋白和RACK1的相互作用。 38肽,其序列反映PDE4D5的12至49位残基。涵盖了整个N端RACK1相互作用域(RAID1)以及一部分beta抑制蛋白结合位点。 H-1 NMR和CD分析表明,该区域具有形成螺旋结构的倾向。 RACK1相互作用所必需的富含亮氨酸的疏水基团形成一个离散的疏水脊,沿着带有Arg34和Asn36的两亲性a螺旋的单面分布,这在RACK1的结合中也起着重要的作用。 RACK1相互作用必不可少的Asn22 / Pro23 / Trp24 / Asn26分组位于包含疏水性脊的两亲性螺旋的N末端。因此,RAID1由独特的两亲性螺旋结构提供。我们建议,PDE4D5与WD重复蛋白RACK1的结合可能类似于Gγ与WD重复蛋白G beta结合的螺旋-螺旋相互作用。 PDE4D5 N端序列(Thr1 1-Ala85)的更广泛部分参与了(β抑制蛋白的结合。但是,RAID1螺旋内的一些残基促成了这种相互作用。我们在这里表明,这些残基在中心形成了一条聚焦带RAID1螺旋的一部分,产生疏水性补丁(来自Leu29,Val30和Leu33),两侧带有极性/带电残基(Asn26,Glu27,Asp28。Arg34)。与β抑制蛋白的相互作用利用了RAID]螺旋上更大的圆周,并涉及两个残基(Glu27,Asp28)对RACK1的结合没有贡献;相反,RACK1与RAID1的相互作用在更长的螺旋长度上延伸,包括Leu37 / Leu38,对β抑制蛋白的结合没有贡献。渗透性,硬脂酰化的Val12-Ser49 38-mer肽破坏了HEKB2细胞中β抑制蛋白和RACK1与内源性PDE4D5的相互作用,而具有Gl​​u27Ala取代的同源肽则选择性地破坏了PDE4D5 / RACK1交互。硬脂酰化的Val12-Ser49 38-mer肽增强了β-2肾上腺素受体(β2AR)的异丙肾上腺素刺激的PKA磷酸化及其ERK的激活,而Glu27Ala肽在这两个方面均无效。 (C)2007 Elsevier Inc.保留所有权利。

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