论文标题
通过有限的深层蛋白质进行系统的构象与表型映射
Systematic conformation-to-phenotype mapping via limited deep-sequencing of proteins
论文作者
论文摘要
非本地构象会促进蛋白质错误折叠疾病,使生物工程的工作复杂化以及燃料分子进化。目前没有非常适合阐明它们及其表型效应的实验技术。特别棘手的是由本质上无序蛋白填充的瞬态构象。我们描述了一种系统地发现,稳定和净化天然和非本地构象的方法,在体外或体内产生,并将构象直接与分子,有机或进化表型联系起来。这种方法涉及整个蛋白质的高通量二硫化物扫描(HTD)。为了揭示哪些在色谱分解构象异构体上的二硫陷阱,我们为蛋白质的双CYS变体库设计了一种深层序列方法,该方法精确且同时同时将两个Cys残基定位在每个多肽中。丰富的大肠杆菌周质伴侣HDEA的HTD揭示了不同类别的疏水构象异构体,其细胞毒性可变,具体取决于骨架交联的位置。 HTD可以为许多在二硫键渗透环境中起作用的蛋白质桥接构象和表型景观。
Non-native conformations drive protein misfolding diseases, complicate bioengineering efforts, and fuel molecular evolution. No current experimental technique is well-suited for elucidating them and their phenotypic effects. Especially intractable are the transient conformations populated by intrinsically disordered proteins. We describe an approach to systematically discover, stabilize, and purify native and non-native conformations, generated in vitro or in vivo, and directly link conformations to molecular, organismal, or evolutionary phenotypes. This approach involves high-throughput disulfide scanning (HTDS) of the entire protein. To reveal which disulfides trap which chromatographically resolvable conformers, we devised a deep-sequencing method for double-Cys variant libraries of proteins that precisely and simultaneously locates both Cys residues within each polypeptide. HTDS of the abundant E. coli periplasmic chaperone HdeA revealed distinct classes of disordered hydrophobic conformers with variable cytotoxicity depending on where the backbone was cross-linked. HTDS can bridge conformational and phenotypic landscapes for many proteins that function in disulfide-permissive environments.