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An In Silico Target Fishing Approach to Identify Novel Ochratoxin A Hydrolyzing Enzyme

机译:硅靶捕鱼方法鉴定新型赭曲霉毒素水解酶

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Ochratoxin A (OTA), a mycotoxin that is of utmost concern in food and feed safety, is produced by fungal species that mainly belong to the Aspergillus and Penicillium genera. The development of mitigation strategies to reduce OTA content along the supply chains is key to ensuring safer production of food and feed. Enzyme-based strategies are among the most promising methods due to their specificity, efficacy, and multi-situ applicability. In particular, some enzymes are already known for hydrolyzing OTA into ochratoxin alpha (OTα) and phenylalanine (Phe), eventually resulting in detoxification action. Therefore, the discovery of novel OTA hydrolyzing enzymes, along with the advancement of an innovative approach for their identification, could provide a broader basis to develop more effective mitigating strategies in the future. In the present study, a hybrid in silico/in vitro workflow coupling virtual screening with enzymatic assays was applied in order to identify novel OTA hydrolyzing enzymes. Among the various hits, porcine carboxypeptidase B was identified for the first time as an effective OTA hydrolyzing enzyme. The successful experimental endorsement of findings of the workflow confirms that the presented strategy is suitable for identifying novel OTA hydrolyzing enzymes, and it might be relevant for the discovery of other mycotoxin- mitigating enzymes.
机译:Ochratoxin a(OTA),一种霉菌毒素,其在食品和饲料安全方面至关重要,是由主要属于曲霉和青霉属的真菌物种产生的。减缓沿供应链减少OTA内容的缓解策略的发展是确保食品和饲料更安全的关键。基于酶的策略是由于它们的特殊性,功效和多种适用性导致的最有希望的方法之一。特别地,一些酶已经已知用于将OTA水解成Ochratoxinα(OTα)和苯丙氨酸(PHE),最终导致排毒作用。因此,对新型OTA水解酶的发现以及进步的创新方法的识别方法,可以为未来制定更有效的减轻策略来提供更广泛的基础。在本研究中,施加具有酶测定的硅/体外工作流程耦合虚拟筛选的杂交体以鉴定新的OTA水解酶。在各种命中,首次鉴定猪羧肽酶B作为有效的OTA水解酶。工作流程的成功实验认真认证证实,所提出的策略适用于鉴定新型OTA水解酶,并且可能与发现其他霉菌毒素的发现有关。

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