Ruzza P, Donella-Deana A, Calderan A, Brunati A, Massimino M L, Elardo S, Mattiazzo A, Pinna L A, Borin G
CNR-Biopolymers Research Center, via Marzolo 1, Padua, 35131 Italy.
Biopolymers. 2001;60(4):290-306. doi: 10.1002/1097-0282(2001)60:4<290::AID-BIP9991>3.0.CO;2-M.
With the aim of interfering with the signaling pathways mediated by the SH2 domains of Src-like tyrosine kinases, we synthesized a tyrosyl-phospho decapeptide, corresponding to the sequence 392-401 of HS1 protein, which inhibits the secondary phosphorylation of HS1 protein catalyzed by the Src-like kinases c-Fgr or Lyn. This phospho-peptide was modified to enter cells by coupling to the third helix of Antennapedia homeodomain, which is able to translocate across cell membranes. Here we present CD and fluorescence studies on the conformational behavior in membrane-mimicking environments and on lipid interactions of Antennapedia fragment and its chimeric phosphorylated and unphosphorylated derivatives. These studies evidenced that electrostatic rather than amphiphilic interactions determine the peptide adsorption on lipids. Experiments performed with recombinant protein containing the SH2 domain of c-Fgr fused with GST and with isolated erythrocyte membranes demonstrated that the presence of the N-terminal Antennapedia fragment only slightly affects the binding of the phospho-HS1 peptide to the SH2 domain. In fact, it has been shown that in isolated erythrocyte membranes, both phospho-HS1 peptide and its chimeric derivative greatly affect either the SH2-mediated recruitment of the c-Fgr to the transmembrane protein band 3 and the following phosphorylation of the protein catalyzed by the Src-like kinase c-Fgr. The ability of the chimeric phospho-peptide to enter cells has been demonstrated by confocal microscopy analysis.
为了干扰由Src样酪氨酸激酶的SH2结构域介导的信号通路,我们合成了一种酪氨酰磷酸十肽,其对应于HS1蛋白的392 - 401序列,该十肽可抑制由Src样激酶c - Fgr或Lyn催化的HS1蛋白的二次磷酸化。通过与能够跨细胞膜转运的触角足同源结构域的第三螺旋偶联,对该磷酸肽进行修饰以使其能够进入细胞。在此,我们展示了关于触角足片段及其嵌合的磷酸化和未磷酸化衍生物在模拟膜环境中的构象行为以及脂质相互作用的圆二色光谱(CD)和荧光研究。这些研究表明,静电相互作用而非两亲性相互作用决定了肽在脂质上的吸附。用含有与谷胱甘肽S - 转移酶(GST)融合的c - Fgr的SH2结构域的重组蛋白以及分离的红细胞膜进行的实验表明,N端触角足片段的存在仅对磷酸化HS1肽与SH2结构域的结合有轻微影响。事实上,已经表明在分离的红细胞膜中,磷酸化HS1肽及其嵌合衍生物都极大地影响了由SH2介导的c - Fgr向跨膜蛋白带3的募集以及随后由Src样激酶c - Fgr催化的该蛋白的磷酸化。共聚焦显微镜分析证明了嵌合磷酸肽进入细胞的能力。