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Phage display selection of ligand residues important for Src homology 3 domain binding specificity.

机译:噬菌体展示对Src同源性3结构域结合特异性重要的配体残基的选择。

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摘要

The Src homology 3 (SH3) domain is a 50-aa modular unit present in many cellular proteins involved in intracellular signal transduction. It functions to direct protein-protein interactions through the recognition of proline-rich motifs on associated proteins. SH3 domains are important regulatory elements that have been demonstrated to specify distinct regulatory pathways important for cell growth, migration, differentiation, and responses to the external milieu. By the use of synthetic peptides, ligands have been shown to consist of a minimum core sequence and to bind to SH3 domains in one of two pseudosymmetrical orientations, class I and class II. The class I sites have the consensus sequence ZP(L/P)PP psi P whereas the class II consensus is PP psi PPZ (where psi is a hydrophobic residue and Z is a SH3 domain-specific residue). We previously showed by M13 phage display that the Src, Fyn, Lyn, and phosphatidylinositol 3-kinase (PI3K) SH3 domains preferred the same class I-type core binding sequence, RPLPP psi P. These results failed to explain the specificity for cellular proteins displayed by SH3 domains in cells. In the current study, class I and class II core ligand sequences were displayed on the surface of bacteriophage M13 with five random residues placed either N- or C-terminal of core ligand residues. These libraries were screened for binding to the Src, Fyn, Lyn, Yes, and PI3K SH3 domains. By this approach, additional ligand residue preferences were identified that can increase the affinity of SH3 peptide ligands at least 20-fold compared with core peptides. The amino acids selected in the flanking sequences were similar for Src, Fyn, and Yes SH3 domains; however, Lyn and PI3K SH3 domains showed distinct binding specificities. These results indicate that residues that flank the core binding sequences shared by many SH3 domains are important determinants of SH3 binding affinity and selectivity.
机译:Src同源性3(SH3)域是存在于细胞内信号转导的许多细胞蛋白中的50个氨基酸的模块化单元。它的功能是通过识别相关蛋白上富含脯氨酸的基序来指导蛋白-蛋白相互作用。 SH3结构域是重要的调控元件,已被证明对细胞生长,迁移,分化和对外部环境的反应至关重要的独特调控途径。通过使用合成肽,已经显示出配体由最小的核心序列组成并且以两个假对称方向之一(I类和II类)与SH3结构域结合。 I类位点的共有序列为ZP(L / P)PP psi P,而II类位点的共有序列为PP psi PPZ(其中psi是疏水残基,Z是SH3结构域特异性残基)。我们以前通过M13噬菌体展示显示Src,Fyn,Lyn和磷脂酰肌醇3-激酶(PI3K)SH3域优先选择相同的I类核心结合序列RPLPP psiP。这些结果未能解释对细胞蛋白的特异性由单元格中的SH3域显示。在当前研究中,在噬菌体M13的表面展示了I类和II类核心配体序列,并在核心配体残基的N端或C端放置了五个随机残基。筛选了这些库以结合到Src,Fyn,Lyn,Yes和PI3K SH3域。通过这种方法,鉴定了额外的配体残基偏好性,与核心肽相比,该偏好性可以将SH3肽配体的亲和力提高至少20倍。对于Src,Fyn和Yes SH3结构域,在侧翼序列中选择的氨基酸是相似的。但是,Lyn和PI3K SH3结构域显示出独特的结合特异性。这些结果表明,许多SH3结构域共有的核心结合序列侧翼的残基是SH3结合亲和力和选择性的重要决定因素。

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