超离心机
离心
超滤(肾)
小泡
分析超速离心
生物
大肠杆菌
支原体
大小排阻色谱法
细菌
细胞外小泡
差速离心
分离(微生物学)
微泡
色谱法
膜
计算生物学
化学
微生物学
生物化学
细胞生物学
基因
遗传学
结核分枝杆菌
小RNA
酶
病理
医学
肺结核
作者
Priscila Dauros‐Singorenko,Vanessa Rong Jen Chang,Alana L. Whitcombe,Denis Simonov,Jiwon Hong,Anthony R.J. Phillips,Simon Swift,Cherie Blenkiron
标识
DOI:10.1080/20013078.2017.1324731
摘要
ABSTRACT Prokaryotes release membrane vesicles (MVs) with direct roles in disease pathogenesis. MVs are heterogeneous when isolated from bacterial cultures so Density Gradient Centrifugation (DGC) is valuable for separation of MV subgroups from contaminating material. Here we report the technical variability and natural biological heterogeneity seen between DGC preparations of MVs for Mycobacterium smegmatis and Escherichia coli and compare these DGC data with size exclusion chromatography (SEC) columns. Crude preparations of MVs, isolated from cultures by ultrafiltration and ultracentrifugation were separated by DGC with fractions manually collected as guided by visible bands. Yields of protein, RNA and endotoxin, protein banding and particle counts were analysed in these. DGC and SEC methods enabled separation of molecularly distinct MV populations from crude MVs. DGC banding profiles were unique for each of the two species of bacteria tested and further altered by changing culture conditions, for example with iron supplementation. SEC is time efficient, reproducible and cost effective method that may also allow partial LPS removal from Gram‐negative bacterial MVs. In summary, both DGC and SEC are suitable for the separation of mixed populations of MVs and we advise trials of both, coupled with complete molecular and single vesicle characterisation prior to downstream experimentation.
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