Rosal Ramon, Pincus Matthew R, Brandt-Rauf Paul W, Fine Robert L, Michl Josef, Wang Hsin
Department of Environmental Health Sciences, Mailman School of Public Health of Columbia University, 60 Haven Avenue, New York, New York 10032, USA.
Biochemistry. 2004 Feb 24;43(7):1854-61. doi: 10.1021/bi035718g.
We have recently found that a peptide from the mdm-2 binding domain of the p53 protein induced rapid membranolytic necrosis of a variety of different human cancer cell lines. To determine the role of solution structure in this peptide's selective and rapid tumor membrane disruptive behavior, we have performed two-dimensional NMR on a 32-residue sequence called PNC-27, in both an aqueous cytosolic-like and a mixed organic membrane-mimetic solution environment. In an aqueous milieu, PNC-27 contains three alpha-helical domains connected by loop structures, forming an S shape, and another similar structure with less helical structure. In a solution environment simulating a membrane, the helical domains found in water increase in length, forming three classes of structures, all of which form a U-shaped helix-coil-helix ensemble. In both solvent systems, this peptide forms amphipathic structures such that its hydrophobic residues coalesce on one face while the polar residues aggregate on the opposite face. The ability to form these unique structures in these two solution environments may allow the PNC-27 peptide to selectively and rapidly disrupt cancer cell membranes.
我们最近发现,一种来自p53蛋白mdm - 2结合域的肽能诱导多种不同人类癌细胞系发生快速的膜溶解性坏死。为了确定溶液结构在该肽选择性和快速的肿瘤膜破坏行为中的作用,我们在一种类似细胞溶质的水性溶液和一种模拟膜的混合有机溶液环境中,对一个名为PNC - 27的32个残基的序列进行了二维核磁共振研究。在水性环境中,PNC - 27包含三个由环结构连接的α - 螺旋结构域,形成一个S形,以及另一个螺旋结构较少的类似结构。在模拟膜的溶液环境中,在水中发现的螺旋结构域长度增加,形成三类结构,所有这些结构都形成一个U形的螺旋 - 线圈 - 螺旋组合。在这两种溶剂体系中,该肽都形成两亲性结构,使得其疏水残基在一面聚集,而极性残基在相对的一面聚集。在这两种溶液环境中形成这些独特结构的能力可能使PNC - 27肽能够选择性且快速地破坏癌细胞膜。