Gmeiner W H, Xu I, Horita D A, Smithgall T E, Engen J R, Smith D L, Byrd R A
Department of Biochemistry, Wake Forest University School of Medicine, Winston-Salem, NC 27157, USA.
Cell Biochem Biophys. 2001;35(2):115-26. doi: 10.1385/cbb:35:2:115.
SH3 domains are a conserved feature of many nonreceptor protein tyrosine kinases, such as Hck, and often function in substrate recruitment and regulation of kinase activity. SH3 domains modulate kinase activity by binding to polyproline helices (PPII helix) either intramolecularly or in target proteins. The preponderance of bimolecular and distal interactions between SH3 domains and PPII helices led us to investigate whether proximal placement of a PPII helix relative to an SH3 domain would result in tight, intramolecular binding. We have fused the PPII helix region of human GAP to the C-terminus of Hck SH3 and expressed the recombinant fusion protein in Escherichia coli. The fusion protein, SH3Hck : PPIIhGAP, folded spontaneously into a structure in which the PPII helix was bound intramolecularly to the hydrophobic crevice of the SH3 domain. The SH3Hck : PPIIhGAP fusion protein is useful for investigating SH3: PPII helix interactions, for studying concepts in protein folding and design, and may represent a protein structural motif that is widely distributed in nature.
SH3结构域是许多非受体蛋白酪氨酸激酶(如Hck)的一个保守特征,通常在底物募集和激酶活性调节中发挥作用。SH3结构域通过分子内或与靶蛋白中的多聚脯氨酸螺旋(PPII螺旋)结合来调节激酶活性。SH3结构域与PPII螺旋之间大量的双分子和远距离相互作用促使我们研究PPII螺旋相对于SH3结构域的近端放置是否会导致紧密的分子内结合。我们已将人GAP的PPII螺旋区域融合到Hck SH3的C末端,并在大肠杆菌中表达了重组融合蛋白。融合蛋白SH3Hck:PPIIhGAP自发折叠成一种结构,其中PPII螺旋通过分子内方式与SH3结构域的疏水裂隙结合。SH3Hck:PPIIhGAP融合蛋白可用于研究SH3:PPII螺旋相互作用、研究蛋白质折叠和设计的概念,并且可能代表一种在自然界中广泛分布的蛋白质结构基序。