Morales Krystal A, Yang Yuan, Long Zheng, Li Pingwei, Taylor Alexander B, Hart P John, Igumenova Tatyana I
Department of Biochemistry and Biophysics, Texas A&M University, College Station, Texas 77843, United States.
J Am Chem Soc. 2013 Sep 4;135(35):12980-3. doi: 10.1021/ja406958k. Epub 2013 Aug 21.
Due to its favorable spectroscopic properties, Cd(2+) is frequently used as a probe of Ca(2+) sites in proteins. We investigate the ability of Cd(2+) to act as a structural and functional surrogate of Ca(2+) in protein-membrane interactions. C2 domain from protein kinase Cα (C2α) was chosen as a paradigm for the Ca(2+)-dependent phosphatidylserine-binding peripheral membrane domains. We identified the Cd(2+)-binding sites of C2α using NMR spectroscopy, determined the 1.6 Å crystal structure of Cd(2+)-bound C2α, and characterized metal-ion-dependent interactions between C2α and phospholipid membranes using fluorescence spectroscopy and ultracentrifugation experiments. We show that Cd(2+) forms a tight complex with the membrane-binding loops of C2α but is unable to support its membrane-binding function. This is in sharp contrast with Pb(2+), which is almost as effective as Ca(2+) in driving the C2α-membrane association process. Our results provide the first direct evidence for the specific role of divalent metal ions in mediating protein-membrane interactions, have important implications for metal substitution studies in proteins, and illustrate the potential diversity of functional responses caused by toxic metal ions.
由于其良好的光谱性质,Cd(2+) 常被用作蛋白质中Ca(2+) 位点的探针。我们研究了Cd(2+) 在蛋白质-膜相互作用中作为Ca(2+) 的结构和功能替代物的能力。选择蛋白激酶Cα(C2α)的C2结构域作为Ca(2+) 依赖性磷脂酰丝氨酸结合外周膜结构域的范例。我们使用核磁共振光谱法确定了C2α的Cd(2+) 结合位点,测定了结合Cd(2+) 的C2α的1.6 Å晶体结构,并使用荧光光谱法和超速离心实验表征了C2α与磷脂膜之间的金属离子依赖性相互作用。我们表明,Cd(2+) 与C2α的膜结合环形成紧密复合物,但无法支持其膜结合功能。这与Pb(2+) 形成鲜明对比,Pb(2+) 在驱动C2α-膜结合过程中几乎与Ca(2+) 一样有效。我们的结果为二价金属离子在介导蛋白质-膜相互作用中的特定作用提供了首个直接证据,对蛋白质中的金属替代研究具有重要意义,并说明了有毒金属离子引起的功能反应的潜在多样性。