Dept. of Chemistry and Biochemistry, UCSC, 1156 High Street, Santa Cruz, California 95064, United States.
Dept. of Chemistry and Biochemistry, UCLA, 607 Charles E. Young Drive East, Box 951569, Los Angeles, California 90095-1569, United States.
J Am Chem Soc. 2023 Nov 29;145(47):25917-25926. doi: 10.1021/jacs.3c11712. Epub 2023 Nov 16.
The rippled β-sheet was theorized by Pauling and Corey in 1953 as a structural motif in which mirror image peptide strands assemble into hydrogen-bonded periodic arrays with strictly alternating chirality. Structural characterization of the rippled β-sheet was limited to biophysical methods until 2022 when atomic resolution structures of the motif were first obtained. The crystal structural foundation is restricted to four model tripeptides composed exclusively of aromatic residues. Here, we report five new rippled sheet crystal structures derived from amyloid β and amylin, the aggregating toxic peptides of Alzheimer's disease and type II diabetes, respectively. Despite the variation in peptide sequence composition, all five structures form antiparallel rippled β-sheets that extend, like a fibril, along the entire length of the crystalline needle. The long-range packing of the crystals, however, varies. In three of the crystals, the sheets pack face-to-face and exclude water, giving rise to cross-β architectures grossly resembling the steric zipper motif of amyloid fibrils but differing in fundamental details. In the other two crystals, the solvent is encapsulated between the sheets, yielding fibril architectures capable of host-guest chemistry. Our study demonstrates that the formation of rippled β-sheets from aggregating racemic peptide mixtures in three-dimensional (3D) assemblies is a general phenomenon and provides a structural basis for targeting intrinsically disordered proteins.
1953 年,鲍林和科里(Corey)提出了波纹β-折叠的理论,认为其是一种结构基序,其中镜像的肽链通过氢键形成周期性排列,严格交替手性。直到 2022 年,该结构基序的原子分辨率结构首次获得,波纹β-折叠的结构特征才仅限于生物物理方法。晶体结构基础仅限于由完全由芳香族残基组成的四个模型三肽。在这里,我们报告了五个源自淀粉样β和胰淀素的新波纹片晶结构,分别为阿尔茨海默病和 2 型糖尿病的聚集毒性肽。尽管肽序列组成存在差异,但所有五个结构都形成了平行的波纹β-折叠,就像纤维一样,沿着晶体针的整个长度延伸。然而,晶体的长程堆积方式却有所不同。在三个晶体中,片层面对面堆积并排除水,形成与淀粉样纤维的空间拉链结构大致相似但在基本细节上不同的交叉-β结构。在另外两个晶体中,溶剂被包裹在片层之间,形成能够进行主体-客体化学的纤维结构。我们的研究表明,在三维(3D)组装中,由聚集的外消旋肽混合物形成波纹β-片层是一种普遍现象,并为靶向固有无序蛋白提供了结构基础。