Houliston R Scott, Hodges Robert S, Sharom Frances J, Davis James H
Department of Chemistry and Biochemistry, University of Guelph, Guelph, ON, Canada , N1G 2W1.
FEBS Lett. 2003 Jan 30;535(1-3):39-43. doi: 10.1016/s0014-5793(02)03852-8.
A single mutation within the transmembrane region of the Neu receptor (Val664-->Glu) is known to enhance tyrosine kinase activity, by promoting receptor dimerization. In order to gain insight into potential structural changes that arise as a result of the mutation, peptides corresponding to the complete transmembrane domain of proto-oncogenic and mutant forms of Neu have been studied by 1H nuclear magnetic resonance in the solvent trifluoroethanol (TFE). The chemical shifts are similar for both forms of the peptide, with the exception of amide residues close to the mutation site. Both peptides adopt a helical conformation, with a distinct bend one turn downstream of the mutation site. This deformation gives rise to several nuclear Overhauser effects, the majority of which were detected in both peptides, that are atypical for a straight canonical alpha-helix. Our data in this solvent do not support a conformational change in the transmembrane domain of monomeric Neu as a result of the mutation. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis analysis indicates that proto-oncogenic Neu peptides have a higher propensity to oligomerize in the solvent TFE than the Glu664 oncogenic form.
已知Neu受体跨膜区域内的单个突变(Val664→Glu)通过促进受体二聚化来增强酪氨酸激酶活性。为了深入了解由该突变导致的潜在结构变化,已通过在三氟乙醇(TFE)溶剂中进行的1H核磁共振研究了与原癌基因形式和突变形式的Neu完整跨膜结构域相对应的肽段。两种形式的肽段化学位移相似,除了靠近突变位点的酰胺残基。两种肽段均采用螺旋构象,在突变位点下游一圈处有明显的弯曲。这种变形产生了几种核Overhauser效应,其中大多数在两种肽段中均被检测到,这对于直的典型α螺旋来说是不典型的。我们在这种溶剂中的数据不支持单体Neu的跨膜结构域因突变而发生构象变化。十二烷基硫酸钠-聚丙烯酰胺凝胶电泳分析表明,原癌基因Neu肽段在TFE溶剂中比Glu664致癌形式更倾向于寡聚化。