Egnaczyk G F, Greis K D, Stimson E R, Maggio J E
Department of Pharmacology & Cell Biophysics, University of Cincinnati College of Medicine, 231 Albert Sabin Way, P.O. Box 670575, Cincinnati, Ohio 45267-0575, USA.
Biochemistry. 2001 Oct 2;40(39):11706-14. doi: 10.1021/bi002852h.
The assembly of the beta-amyloid peptide (Abeta) into amyloid fibrils is essential to the pathogenesis of Alzheimer's disease. Detailed structural information about fibrillogenesis has remained elusive due to the highly insoluble, noncrystalline nature of the assembled peptide. X-ray fiber diffraction, infrared spectroscopy, and solid-state NMR studies performed on fibrils composed of Abeta peptides have led to conflicting models of the intermolecular alignment of beta-strands. We demonstrate here the use of photoaffinity cross-linking to determine high-resolution structural constraints on Abeta monomers within amyloid fibrils. A photoreactive Abeta(1-40) ligand was synthesized by substituting L-p-benzoylphenylalanine (Bpa) for phenylalanine at position 4 (Abeta(1-40) F4Bpa). This peptide was incorporated into synthetic amyloid fibrils and irradiated with near-UV light. SDS-PAGE of dissolved fibrils revealed the light-dependent formation of a covalent Abeta dimer. Enzymatic cleavage followed by mass spectrometric analysis demonstrated the presence of a dimer-specific ion at MH(+) = 1825.9, the predicted mass of a fragment composed of the N-terminal Abeta(1-5) F4Bpa tryptic peptide covalently attached to the C-terminal Abeta(29-40) tryptic peptide. MS/MS experiments and further chemical modifications of the cross-linked dimer led to the localization of the photo-cross-link between the ketone of the Bpa4 side chain and the delta-methyl group of the Met35 side chain. The Bpa4-Met35 intermolecular cross-link is consistent with an antiparallel alignment of Abeta peptides within amyloid fibrils.
β-淀粉样肽(Aβ)组装成淀粉样纤维对于阿尔茨海默病的发病机制至关重要。由于组装后的肽具有高度不溶性、非晶态的性质,关于纤维形成的详细结构信息一直难以捉摸。对由Aβ肽组成的纤维进行的X射线纤维衍射、红外光谱和固态核磁共振研究导致了β-链分子间排列的相互矛盾的模型。我们在此展示了使用光亲和交联来确定淀粉样纤维内Aβ单体的高分辨率结构限制。通过在第4位用L-对苯甲酰基苯丙氨酸(Bpa)取代苯丙氨酸,合成了一种光反应性Aβ(1-40)配体(Aβ(1-40)F4Bpa)。该肽被掺入合成淀粉样纤维中并用近紫外光照射。溶解纤维的SDS-PAGE显示了共价Aβ二聚体的光依赖性形成。酶切后进行质谱分析表明存在MH(+)= 1825.9的二聚体特异性离子,这是由共价连接到C端Aβ(29-40)胰蛋白酶肽的N端Aβ(1-5)F4Bpa胰蛋白酶肽组成的片段的预测质量。MS/MS实验和交联二聚体的进一步化学修饰导致了Bpa4侧链的酮与Met35侧链的δ-甲基之间光交联的定位。Bpa4-Met35分子间交联与淀粉样纤维内Aβ肽的反平行排列一致。