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全长 FICD 中活性人膜蛋白的产生

Production of an Active, Human Membrane Protein in : Full-Length FICD.

机构信息

Linderstrøm-Lang Centre for Protein Science, Department of Biology, University of Copenhagen, Ole Maaløes Vej 5, DK-2200 Copenhagen, Denmark.

Department of Biology, University of Copenhagen, Universitetsparken 15, DK-2200 Copenhagen, Denmark.

出版信息

Int J Mol Sci. 2022 Feb 23;23(5):2458. doi: 10.3390/ijms23052458.

Abstract

The human Fic domain-containing protein (FICD) is a type II endoplasmic reticulum (ER) membrane protein that is important for the maintenance of ER proteostasis. Structural and in vitro biochemical characterisation of FICD AMPylase and deAMPylase activity have been restricted to the soluble ER-luminal domain produced in . Information about potentially important features, such as structural motifs, modulator binding sites or other regulatory elements, is therefore missing for the approximately 100 N-terminal residues including the transmembrane region of FICD. Expressing and purifying the required quantity and quality of membrane proteins is demanding because of the low yields and poor stability often observed. Here, we produce full-length FICD by combining a -based platform with green fluorescent protein (GFP) tagging to optimise the conditions for expression, solubilisation and purification. We subsequently employ these conditions to purify milligram quantities of His-tagged FICD per litre of culture, and show that the purified, detergent-solubilised membrane protein is an active deAMPylating enzyme. Our work provides a straightforward methodology for producing not only full-length FICD, but also other membrane proteins in for structural and biochemical characterisation.

摘要

人源 Fic 结构域蛋白(FICD)是一种 II 型内质网(ER)膜蛋白,对于 ER 蛋白稳态的维持很重要。FICD AMP 酶和去 AMP 酶活性的结构和体外生化特性研究仅限于在. 中产生的可溶性 ER 腔域。因此,对于 FICD 的大约 100 个 N 端残基(包括跨膜区域),缺少有关潜在重要特征的信息,如结构基序、调节剂结合位点或其他调节元件。由于产量低和稳定性差,膜蛋白的表达和纯化具有挑战性。在这里,我们通过结合基于 的平台和绿色荧光蛋白(GFP)标记来生产全长 FICD,以优化表达、溶解和纯化的条件。随后,我们利用这些条件从每升培养物中纯化毫克级别的 His 标记的 FICD,并证明纯化的、去污剂溶解的膜蛋白是一种具有活性的去 AMP 酶。我们的工作为不仅生产全长 FICD,而且为其他膜蛋白在. 中的结构和生化特性研究提供了一种简单直接的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7fb2/8910494/d8bb966d5445/ijms-23-02458-g001.jpg

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