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Expression Purification and Characterization of Human Cystatin C Monomers and Oligomers

机译:人胱抑素C单体和寡聚体的表达纯化和表征

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摘要

Human cystatin C (cysC) is a soluble basic protein belonging to the cysteine protease inhibitor family. CysC is a potent inhibitor of cathepsins - proteolytic enzymes that degrade intracellular and endocytosed proteins, remodel extracellular matrix, and trigger apoptosis. Inhibition is via tight reversible binding involving the N-terminus as well as two β-hairpin loops of cysC. As a significant component of cerebrospinal fluid, cysC has numerous other functions, including support of neural stem cell growth and differentiation. Several studies suggest that cysC may bind to the Alzheimer-related protein beta-amyloid (Aβ), and inhibit its aggregation and toxicity. Because of an increasing recognition of its important biological roles, there is considerable interest in methods to produce full-length recombinant human cysC. Several researchers have reported success, but with processes that require multiple purification steps. Here we report successful production of human cysC using an intein-based expression system and a simple one-column purification scheme. The recombinant protein so obtained was natively folded and active as an enzyme inhibitor. Unexpectedly, even mild concentration by ultrafiltration caused significant oligomerization. The oligomers are noncovalent and retain the native secondary structure and inhibitory activity of the monomer. The oligomers, but not the monomers, were highly effective at inhibiting aggregation of Aβ. These results demonstrate the critical importance of careful physicochemical characterization of recombinant cysC protein prior to evaluation of its biological functions.
机译:人胱抑素C(cysC)是属于半胱氨酸蛋白酶抑制剂家族的可溶性碱性蛋白。 CysC是组织蛋白酶的有效抑制剂-组织蛋白酶可降解细胞内和胞吞蛋白,重塑细胞外基质并触发细胞凋亡。抑制作用是通过紧密可逆的结合,涉及cysC的N端和两个β-发夹环。 cysC作为脑脊髓液的重要组成部分,还具有许多其他功能,包括支持神经干细胞的生长和分化。多项研究表明,cysC可能与阿尔茨海默病相关蛋白β-淀粉样蛋白(Aβ)结合,并抑制其聚集和毒性。由于人们日益认识到其重要的生物学作用,因此人们对生产全长重组人cysC的方法非常感兴趣。一些研究人员已经报告了成功,但是其工艺需要多个纯化步骤。在这里,我们报告使用基于intein的表达系统和简单的单列纯化方案成功生产人cysC。将如此获得的重组蛋白天然折叠并作为酶抑制剂具有活性。出乎意料的是,即使通过超滤进行适度的浓缩也会引起明显的低聚。所述低聚物是非共价的,并且保留单体的天然二级结构和抑制活性。低聚物而非单体在抑制Aβ聚集方面非常有效。这些结果表明,在评估重组cysC蛋白的生物学功能之前,对其进行仔细的理化鉴定至关重要。

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