Lee Young-Tae, Dimitrova Yoana N, Schneider Gabriela, Ridenour Whitney B, Bhattacharya Shibani, Soss Sarah E, Caprioli Richard M, Filipek Anna, Chazin Walter J
Departments of Biochemistry and Chemistry and Center for Structural Biology, Vanderbilt University, Nashville, Tennessee 37232-8725, USA.
Biochemistry. 2008 Oct 14;47(41):10921-32. doi: 10.1021/bi801233z. Epub 2008 Sep 20.
S100A6 is a member of the S100 subfamily of EF-hand Ca (2+) binding proteins that has been shown to interact with calcyclin binding protein/Siah-1 interacting protein (CacyBP/SIP or SIP), a subunit of an SCF-like E3 ubiquitin ligase complex (SCF-TBL1) formed under genotoxic stress. SIP serves as a scaffold in this complex, linking the E2-recruiting module Siah-1 to the substrate-recruiting module Skp1-TBL1. A cell-based functional assay suggests that S100A6 modulates the activity of SCF-TBL1. The results from the cell-based experiments could be enhanced if it were possible to selectively inhibit S100A6-SIP interactions without perturbing any other functions of the two proteins. To this end, the structure of the S100A6-SIP complex was determined in solution by NMR and the strength of the interaction was characterized by isothermal titration calorimetry. In an initial step, the minimal S100A6 binding region in SIP was mapped to a 31-residue fragment (Ser189-Arg219) in the C-terminal domain. The structure of the S100A6-SIP(189-219) complex revealed that SIP(189-219) forms two helices, the first of which (Met193-Tyr200) interacts with S100A6 in a canonical binding mode. The second helix (Met207-Val216) lies over the S100A6 dimer interface, a mode of binding to S100A6 that has not previously been observed for any target bound to an S100 protein. A series of structure-based SIP mutations showed reduced S100A6 binding affinity, setting the stage for direct functional analysis of S100A6-SIP interactions.
S100A6是EF手型钙离子结合蛋白S100亚家族的成员,已证明它能与钙周期蛋白结合蛋白/与Siah-1相互作用蛋白(CacyBP/SIP或SIP)相互作用,SIP是在基因毒性应激下形成的类SCF E3泛素连接酶复合物(SCF-TBL1)的一个亚基。SIP在该复合物中起支架作用,将E2招募模块Siah-1与底物招募模块Skp1-TBL1连接起来。一项基于细胞的功能分析表明,S100A6可调节SCF-TBL1的活性。如果能够选择性抑制S100A6与SIP的相互作用而不干扰这两种蛋白质的任何其他功能,基于细胞的实验结果将会得到加强。为此,通过核磁共振在溶液中测定了S100A6-SIP复合物的结构,并通过等温滴定量热法表征了相互作用的强度。在第一步中,SIP中最小的S100A6结合区域被定位到C末端结构域的一个31个残基的片段(Ser189-Arg219)。S100A6-SIP(189-219)复合物的结构表明,SIP(189-219)形成两个螺旋,其中第一个螺旋(Met193-Tyr200)以典型的结合模式与S100A6相互作用。第二个螺旋(Met207-Val216)位于S100A6二聚体界面上方,这种与S100A6的结合模式以前在与S100蛋白结合的任何靶标中都未观察到。一系列基于结构的SIP突变显示S100A6结合亲和力降低,为直接功能分析S100A6-SIP相互作用奠定了基础。