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新型半合成方法生成全长β-淀粉样肽。

Novel semisynthetic method for generating full length beta-amyloid peptides.

机构信息

Department of Biochemistry and Molecular Biology, The University of Chicago, Chicago, IL 60637, USA.

出版信息

Biopolymers. 2010;94(4):511-20. doi: 10.1002/bip.21391.

Abstract

Bacterial expression of full length beta-amyloid (Abeta) is problematic because of toxicity and poor solubility of the expressed protein, and a strong tendency of Met35 to become oxidized in inclusion bodies. We have developed a semisynthetic method in which Abeta1-29 is expressed in bacteria as part of a fusion protein with a C-terminal intein and Chitin-Binding Domain (CBD). There is also a single residue, N-terminal Met extension. The protein, Met-Abeta1-29-Intein-CBD, is well expressed and highly water-soluble. After binding of the expressed protein to Chitin beads, treatment with sodium 2-mercapto-ethane sulfonate (MESNA) yields Met-Abeta1-29-MESNA, with a C-terminal thioester suitable for native chemical ligation. Met-Abeta1-29-MESNA is first subjected to CNBr cleavage, which removes the N-terminal Met residue, but leaves the thioester intact. We synthesized NH2-A30C-Abeta30-40, which has an N-terminal Cys residue and is the partner for native chemical ligation with Met-Abeta1-29-MESNA. Native chemical ligation proceeds rapidly and efficiently (>90% yield) to give A30C-Abeta1-40. The final step is selective desulfurization using Raney-Ni, which also proceeds rapidly and efficiently (>90% yield) to give native sequence Abeta1-40. Overall, this system is highly efficient, and can yield approximately 8-10 mg of pure Abeta1-40 from one liter of bacterial culture medium. This procedure is adaptable for producing other Abeta peptides. We have also expressed an Abeta construct bearing a point mutation associated with one type of familial Alzheimer's Disease, the Iowa mutation, i.e., Met-D23N-Abeta1-29-Intein-CBD. Since expression of the intein-containing fusion protein is robust in minimal media as well as standard enriched media, this procedure also can be readily modified for incorporating 15N or 13C labels for NMR. Future work will also include extending this system to longer Abeta peptides, such as Abeta1-42.

摘要

全长β-淀粉样蛋白(Abeta)的细菌表达存在问题,因为表达的蛋白毒性大且溶解性差,而且 Met35 很容易在包涵体中被氧化。我们开发了一种半合成方法,其中 Abeta1-29 作为融合蛋白的一部分在细菌中表达,融合蛋白的 C 端带有内含肽和几丁质结合结构域(CBD)。还有一个残基,N 端 Met 延伸。该蛋白 Met-Abeta1-29-Intein-CBD 表达良好且高度水溶性。表达的蛋白与几丁质珠结合后,用 2-巯基乙磺酸(MESNA)处理得到 Met-Abeta1-29-MESNA,其 C 端形成硫酯,适合进行天然化学连接。Met-Abeta1-29-MESNA 首先进行 CNBr 切割,去除 N 端 Met 残基,但硫酯保持完整。我们合成了 NH2-A30C-Abeta30-40,其 N 端含有 Cys 残基,是与 Met-Abeta1-29-MESNA 进行天然化学连接的配体。天然化学连接快速高效(产率大于 90%),得到 A30C-Abeta1-40。最后一步是使用雷尼镍进行选择性脱硫,该步骤也快速高效(产率大于 90%),得到天然序列 Abeta1-40。总的来说,该系统效率很高,从 1 升细菌培养基中可获得约 8-10mg 的纯 Abeta1-40。该方法适用于生产其他 Abeta 肽。我们还表达了一种带有与一种家族性阿尔茨海默病(即 Iowa 突变)相关的点突变的 Abeta 构建体,即 Met-D23N-Abeta1-29-Intein-CBD。由于含有内含肽的融合蛋白在最小培养基和标准丰富培养基中表达都很稳健,因此该方法也可以很容易地进行修改,以用于掺入 15N 或 13C 标记物进行 NMR。未来的工作还将包括将该系统扩展到更长的 Abeta 肽,如 Abeta1-42。

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