Schmidt Holger, Hoffmann Silke, Tran Tuyen, Stoldt Matthias, Stangler Thomas, Wiesehan Katja, Willbold Dieter
Forschungszentrum Jülich GmbH, INB, Biomolecular NMR, 52425 Jülich, Germany.
J Mol Biol. 2007 Feb 2;365(5):1517-32. doi: 10.1016/j.jmb.2006.11.013. Epub 2006 Nov 10.
We studied the interaction of hematopoietic cell kinase SH3 domain (HckSH3) with an artificial 12-residue proline-rich peptide PD1 (HSKYPLPPLPSL) identified as high affinity ligand (K(D)=0.2 muM). PD1 shows an unusual ligand sequence for SH3 binding in type I orientation because it lacks the typical basic anchor residue at position P(-3), but instead has a tyrosine residue at this position. A basic lysine residue, however, is present at position P(-4). The solution structure of the HckSH3:PD1 complex, which is the first HckSH3 complex structure available, clearly reveals that the P(-3) tyrosine residue of PD1 does not take the position of the typical anchor residue but rather forms additional van der Waals interactions with the HckSH3 RT loop. Instead, lysine at position P(-4) of PD1 substitutes the function of the P(-3) anchor residue. This finding expands the well known ligand consensus sequence +xxPpxP by +xxxPpxP. Thus, software tools like iSPOT fail to identify PD1 as a high-affinity HckSH3 ligand so far. In addition, a short antiparallel beta-sheet in the RT loop of HckSH3 is observed upon PD1 binding. The structure of the HckSH3:PD1 complex reveals novel features of SH3 ligand binding and yields new insights into the structural basics of SH3-ligand interactions. Consequences for computational prediction tools adressing SH3-ligand interactions as well as the biological relevance of our findings are discussed.
我们研究了造血细胞激酶SH3结构域(HckSH3)与一条人工合成的富含脯氨酸的12肽PD1(HSKYPLPPLPSL)的相互作用,该肽被鉴定为高亲和力配体(解离常数K(D)=0.2 μM)。PD1在I型取向中显示出一种不寻常的SH3结合配体序列,因为它在P(-3)位置缺乏典型的碱性锚定残基,而是在该位置有一个酪氨酸残基。然而,在P(-4)位置存在一个碱性赖氨酸残基。HckSH3:PD1复合物的溶液结构是首个可得的HckSH3复合物结构,它清楚地表明PD1的P(-3)酪氨酸残基并未占据典型锚定残基的位置,而是与HckSH3的RT环形成了额外的范德华相互作用。相反,PD1的P(-4)位置赖氨酸替代了P(-3)锚定残基的功能。这一发现将众所周知的配体共有序列+xxPpxP扩展为+xxxPpxP。因此,像iSPOT这样的软件工具目前未能将PD1识别为高亲和力的HckSH3配体。此外,在结合PD1后,观察到HckSH3的RT环中有一个短的反平行β-折叠。HckSH3:PD1复合物的结构揭示了SH3配体结合的新特征,并为SH3-配体相互作用的结构基础提供了新见解。文中讨论了针对SH3-配体相互作用的计算预测工具的影响以及我们研究结果的生物学意义。