Department of Biochemistry & Molecular Biophysics, Kansas State University, 141 Chalmers Hall, 1711 Claflin Road, Manhattan, KS 66506, United States of America.
School of Biological Sciences, University of Missouri-Kansas City, 5100 Rockhill Road, Kansas City, MO 64110, United States of America.
J Immunol Methods. 2019 Oct;473:112633. doi: 10.1016/j.jim.2019.07.005. Epub 2019 Jul 15.
The complement system consists of a series of soluble and cell-surface proteins that serve numerous roles in innate immunity, development, and homeostasis. Despite its many functions, the central event in the complement system is the proteolytic activation of the 185 kDa complement component 3 (C3) into its opsonin and anaphylatoxin fragments known as C3b (175 kDa) and C3a (10 kDa), respectively. The C3 protein is comprised of thirteen separate structural domains, several of which undergo extensive structural rearrangement upon activation to C3b. In addition to this, the C-terminal C345c domain found in C3, C3b, and the terminal degradation product, C3c (135 kDa), appears to adopt multiple conformations relative to the remainder of the molecule. To facilitate various structure/function studies, we designed two C3 analogs that could be activated to a C345c-less, C3c-like state following treatment with Tobacco Etch Virus (TEV) protease. We generated stably transfected Chinese Hamster Ovary (CHO) cell lines that secrete approximately 1.5 mg of the highest-expressing C3 analog per liter of conditioned culture medium. We purified this C3 analog by sequential immobilized metal ion affinity and size exclusion chromatographies, activated the protein by digestion with TEV protease, and purified the resulting C3c analog by a final size exclusion chromatography. The conformations and activities of our C3 and C3c analogs were assessed by measuring their binding profiles to known C3/b/c ligands by surface plasmon resonance. Together, this work demonstrates the feasibility of producing a C3 analog that can be site-specifically activated by an exogenous proteolytic enzyme.
补体系统由一系列可溶性和细胞表面蛋白组成,在先天免疫、发育和内稳态中发挥多种作用。尽管补体系统具有许多功能,但该系统的核心事件是 185kDa 补体成分 3(C3)的蛋白水解激活,分别将其转化为调理素和过敏毒素片段,即 C3b(175kDa)和 C3a(10kDa)。C3 蛋白由十三个独立的结构域组成,其中几个在激活为 C3b 时会发生广泛的结构重排。除此之外,C3、C3b 和末端降解产物 C3c(135kDa)中发现的 C 末端 C345c 结构域似乎相对于分子的其余部分采用多种构象。为了促进各种结构/功能研究,我们设计了两种 C3 类似物,在用烟草蚀纹病毒(TEV)蛋白酶处理后可以被激活为 C345c 缺失、C3c 样状态。我们生成了稳定转染的中国仓鼠卵巢(CHO)细胞系,这些细胞系分泌的最高表达 C3 类似物约为每升条件培养基 1.5mg。我们通过顺序固定化金属离子亲和层析和大小排阻层析纯化该 C3 类似物,用 TEV 蛋白酶消化激活该蛋白,并通过最终的大小排阻层析纯化所得的 C3c 类似物。通过测量其与已知 C3/b/c 配体的结合谱,评估我们的 C3 和 C3c 类似物的构象和活性。总之,这项工作证明了生产可被外源蛋白水解酶特异性激活的 C3 类似物的可行性。