首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Unravelling the Function of a Bacterial Effector from a Non-cultivable Plant Pathogen Using a Yeast Two-hybrid Screen
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Unravelling the Function of a Bacterial Effector from a Non-cultivable Plant Pathogen Using a Yeast Two-hybrid Screen

机译:使用酵母双杂交筛选从不可栽培的植物病原体中阐明细菌效应子的功能

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摘要

Unravelling the molecular mechanisms of disease manifestations is important to understand pathologies and symptom development in plant science. Bacteria have evolved different strategies to manipulate their host metabolism for their own benefit. This bacterial manipulation is often coupled with severe symptom development or the death of the affected plants. Determining the specific bacterial molecules responsible for the host manipulation has become an important field in microbiological research. After the identification of these bacterial molecules, called "effectors," it is important to elucidate their function. A straightforward approach to determine the function of an effector is to identify its proteinaceous binding partner in its natural host via a yeast two-hybrid (Y2H) screen. Normally the host harbors numerous potential binding partners that cannot be predicted sufficiently by any in silico algorithm. It is thus the best choice to perform a screen with the hypothetical effector against a whole library of expressed host proteins. It is especially challenging if the causative agent is uncultivable like phytoplasma. This protocol provides step-by-step instructions for DNA purification from a phytoplasma-infected woody host plant, the amplification of the potential effector, and the subsequent identification of the plant's molecular interaction partner with a Y2H screen. Even though Y2H screens are commonly used, there is a trend to outsource this technique to biotech companies that offer the Y2H service at a cost. This protocol provides instructions on how to perform a Y2H in any decently equipped molecular biology laboratory using standard lab techniques.
机译:阐明疾病表现的分子机制对于理解植物科学中的病理学和症状发展很重要。细菌已经进化出不同的策略来操纵宿主的新陈代谢,以实现自身的利益。这种细菌操作常常伴随着严重的症状发展或受影响植物的死亡。确定负责宿主操纵的特定细菌分子已成为微生物学研究的重要领域。在鉴定了这些称为“效应子”的细菌分子之后,阐明其功能很重要。确定效应子功能的直接方法是通过酵母双杂交(Y2H)筛选在其天然宿主中鉴定其蛋白质结合伴侣。通常,宿主具有许多潜在的结合配偶体,而任何计算机模拟算法都无法充分预测它们。因此,最好是使用假想的效应子对表达的宿主蛋白的整个文库进行筛选。如果病原体像植原体一样无法培养,则尤其具有挑战性。该协议为从感染了植物原质的木本宿主植物中纯化DNA,扩增潜在效应子以及随后通过Y2H筛选鉴定植物的分子相互作用伴侣提供了分步说明。尽管通常使用Y2H筛查,但仍存在将这种技术外包给以成本付费提供Y2H服务的生物技术公司的趋势。该协议提供了有关如何在使用标准实验室技术的任何体面装备良好的分子生物学实验室中进行Y2H的说明。

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