通过离子交换色谱法、凝胶过滤法和 MDPF-明胶-酶谱分析法制备和纯化与 β-1,3-葡聚糖相关的胶状念珠菌细胞壁蛋白酶。

IF 1 Q3 BIOLOGY
Pirjo Pärnänen, Timo Sorsa, Taina Tervahartiala, Pirjo Nikula-Ijäs
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引用次数: 0

摘要

光滑念珠菌(Candida glabrata)是一种机会性病原体,可能会对免疫力低下的宿主造成严重感染。光滑念珠菌细胞壁蛋白酶直接与宿主细胞相互作用,影响酵母菌的毒力和宿主的免疫反应。本方案介绍了从胶酵母中纯化β-1,3-葡聚糖结合的细胞壁蛋白酶的方法。这些细胞壁蛋白酶通过裂解酶处理从细胞壁葡聚糖网络中分离出来,裂解酶可特异性地水解β-1,3-葡聚糖键,而不会使细胞破裂。细胞壁上清液通过截留分子量为 10 和 50 kDa 的离心装置、离子交换过滤(电荷)和凝胶过滤(尺寸排除)进一步分馏。用 MDPF-明胶酶谱法验证 C. glabrata 蛋白酶的酶活性,并通过明胶荧光的消失来观察明胶的降解情况。与以往研究中使用的胰蛋白酶消化酵母细胞壁的方法不同,这种方法能完整地保留馏分中的酶活性。最终可从平行银染色凝胶中找到蛋白质条带,并用 LC-MS/MS 光谱法进行鉴定。这种方法的优点是可以进一步进行宿主蛋白质降解测定;该方案也适用于研究其他念珠菌酵母种类。主要特点 - 使用基本材料和实验室设备,实现低成本研究。- 便于选择和鉴定具有特定分子量的蛋白酶。- 可对宿主蛋白(如结构或免疫反应相关蛋白)或酶和候选蛋白酶抑制剂(如天然物质)进行进一步功能研究。- 该方案针对光滑念珠菌进行了优化,但经修改后也可用于其他念珠菌。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Preparation and Purification of β-1,3-glucan-Linked Candida glabrata Cell Wall Proteases by Ion-Exchange Chromatography, Gel Filtration, and MDPF-Gelatin-Zymography Assay.

Candida glabrata is an opportunistic pathogen that may cause serious infections in an immunocompromised host. C. glabrata cell wall proteases directly interact with host cells and affect yeast virulence and host immune responses. This protocol describes methods to purify β-1,3-glucan-bonded cell wall proteases from C. glabrata. These cell wall proteases are detached from the cell wall glucan network by lyticase treatment, which hydrolyzes β-1,3-glucan bonds specifically without rupturing cells. The cell wall supernatant is further fractioned by centrifugal devices with cut-offs of 10 and 50 kDa, ion-exchange filtration (charge), and gel filtration (size exclusion). The enzymatic activity of C. glabrata proteases is verified with MDPF-gelatin zymography and the degradation of gelatin is visualized by loss of gelatin fluorescence. With this procedure, the enzymatic activities of the fractions are kept intact, differing from methods used in previous studies with trypsin digestion of the yeast cell wall. The protein bands may be eventually located from a parallel silver-stained gel and identified with LC-MS/MS spectrometry. The advantage of this methodology is that it allows further host protein degradation assays; the protocol is also suitable for studying other Candida yeast species. Key features • Uses basic materials and laboratory equipment, enabling low-cost studies. • Facilitates the selection and identification of proteases with certain molecular weights. • Enables further functional studies with host proteins, such as structural or immune response-related, or enzymes and candidate protease inhibitors (e.g., from natural substances). • This protocol has been optimized for C. glabrata but may be applied with modifications to other Candida species.

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