Grzesiek S, Stahl S J, Wingfield P T, Bax A
Laboratory of Chemical Physics, National Institute of Diabetes and digestive and Kidney Diseases, National Institutes of Health, Bethesda, Maryland 20892-0520, USA.
Biochemistry. 1996 Aug 13;35(32):10256-61. doi: 10.1021/bi9611164.
Using heteronuclear NMR spectroscopy, we demonstrate that a 13-residue peptide (MS-QIKRLLSEKKT) from the cytoplasmic tail of CD4 binds to Nef protein. This part of CD4 is critical for downregulation of CD4 by HIV-1 Nef [Aiken et al. (1994) Cell 76, 853-864]. We show that a control peptide without the central dileucine does not bind to Nef. The dependence of Nef 1H and 15N amide chemical shifts on peptide concentration indicates that the binding is in the fast chemical exchange limit, with a dissociation constant Kd of approximately 1 mM. The peptide binding site has been mapped onto the previously determined solution structure of HIV-1 Nef [Grzesiek et al. (1996) Nat. Struct. Biol. 3, 340-345] on the basis of peptide-induced chemical shift changes. It comprises amino acids W57, L58, E59, G95, G96, L97, R106, and L110. When Nef is complexed to the SH3 domain of Hck tyrosine protein kinase, the peptide binds to the same site on Nef but with slightly higher affinity (Kd approximately 0.5 mM). This indicates that the binding of CD4 and Hck SH3 to Nef are two compatible and slightly cooperative events.
利用异核核磁共振光谱技术,我们证明了来自CD4细胞质尾巴的一个13残基肽段(MS-QIKRLLSEKKT)与Nef蛋白结合。CD4的这一部分对于HIV-1 Nef介导的CD4下调至关重要[Aiken等人(1994年),《细胞》76卷,853 - 864页]。我们发现,没有中央双亮氨酸的对照肽不与Nef结合。Nef的1H和15N酰胺化学位移对肽浓度的依赖性表明,结合处于快速化学交换极限,解离常数Kd约为1 mM。基于肽诱导的化学位移变化,已将肽结合位点定位到先前确定的HIV-1 Nef溶液结构上[Grzesiek等人(1996年),《自然结构生物学》3卷,340 - 345页]。它包括氨基酸W57、L58、E59、G95、G96、L97、R106和L110。当Nef与Hck酪氨酸蛋白激酶的SH3结构域复合时,该肽以稍高的亲和力(Kd约为0.5 mM)结合到Nef上的同一位点。这表明CD4和Hck SH3与Nef的结合是两个相容且略有协同作用的事件。