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Endogenous biotin-binding proteins: an overlooked factor causing false positives in streptavidin-based protein detection

机译:内源性生物素结合蛋白:基于链霉亲和素的蛋白检测中导致假阳性的一个被忽略的因素

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摘要

Biotinylation is widely used in DNA, RNA and protein probing assays as this molecule has generally no impact on the biological activity of its substrate. During the streptavidin-based detection of glycoproteins in Lactobacillus rhamnosus GG with biotinylated lectin probes, a strong positive band of approximately 125 kDa was observed, present in different cellular fractions. This potential glycoprotein reacted heavily with concanavalin A (ConA), a lectin that specifically binds glucose and mannose residues. Surprisingly, this protein of 125 kDa could not be purified using a ConA affinity column. Edman degradation of the protein, isolated via cation and anion exchange chromatography, lead to the identification of the band as pyruvate carboxylase, an enzyme of 125 kDa that binds biotin as a cofactor. Detection using only the streptavidin conjugate resulted in more false positive signals of proteins, also in extracellular fractions, indicating biotin-associated proteins. Indeed, biotin is a known cofactor of numerous carboxylases. The potential occurence of false positive bands with biotinylated protein probes should thus be considered when using streptavidin-based detection, e.g. by developing a blot using only the streptavidin conjugate. To circumvent these false positives, alternative approaches like detection based on digoxigenin labelling can also be used.
机译:生物素化被广泛用于DNA,RNA和蛋白质探测测定中,因为该分子通常对其底物的生物学活性没有影响。用生物素化的凝集素探针在鼠李糖乳杆菌GG中基于链霉亲和素的糖蛋白检测过程中,观察到大约125 kDa的强阳性带,存在于不同的细胞级分中。这种潜在的糖蛋白与刀豆凝集素A(ConA)发生了严重反应,后者是一种特异性结合葡萄糖和甘露糖残基的凝集素。出乎意料的是,无法使用ConA亲和柱纯化125 kDa的蛋白质。通过阳离子和阴离子交换色谱分离的蛋白质的埃德曼降解,导致该条带被鉴定为丙酮酸羧化酶,是一种125 kDa的酶,与生物素作为辅因子结合。仅使用链霉亲和素缀合物的检测导致蛋白质的更多假阳性信号,也在细胞外级分中,表明生物素相关蛋白。实际上,生物素是许多羧酸酶的已知辅助因子。因此,在使用基于链霉亲和素的检测方法(例如链霉亲和素)时,应考虑生物素化蛋白探针可能会出现假阳性条带。通过仅使用链霉亲和素缀合物产生印迹。为了避免这些误报,也可以使用其他方法,例如基于洋地黄毒苷标记的检测。

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