Technical Unit Radiation Biology and Human Health, Biotechnologies Laboratory, ENEA C.R. Casaccia, Via Anguillarese 301, 00123, Rome, Italy.
Transgenic Res. 2011 Apr;20(2):331-44. doi: 10.1007/s11248-010-9418-1. Epub 2010 Jun 18.
Mammalian Heat Shock Proteins (HSP), have potent immune-stimulatory properties due to the natural capability to associate with polypeptides and bind receptors on antigen presenting cells. The present study was aimed to explore whether plant HSP, and in particular HSP70, share similar properties. We wanted in particular to evaluate if HSP70 extracted in association to naturally bound polypeptides from plant tissues expressing a recombinant "reporter" antigen, carry antigen-derived polypeptides and can be used to activate antigen-specific immune responses. This application of HSP70 has been very poorly investigated so far. The analysis started by structurally modeling the plant protein and defining the conditions that ensure maximal expression levels and optimal recovery from plant tissues. Afterwards, HSP70 was purified from Nicotiana benthamiana leaves transiently expressing a heterologous "reporter" protein. The purification was carried out taking care to avoid the release from HSP70 of the polypeptides chaperoned within plant cells. The evaluation of antibody titers in mice sera subsequent to the subcutaneous delivery of the purified HSP70 demonstrated that it is highly effective in priming humoral immune responses specific to the plant expressed "reporter" protein. Overall results indicated that plant-derived HSP70 shares structural and functional properties with the mammalian homologue. This study paves the way to further investigations targeted at determining the properties of HSP70 extracted from plants expressing foreign recombinant antigens as a readily available immunological carrier for the efficient delivery of polypeptides derived from these antigens.
哺乳动物热休克蛋白(HSP)具有很强的免疫刺激特性,这是由于其与多肽结合并与抗原呈递细胞上的受体结合的天然能力。本研究旨在探索植物 HSP,特别是 HSP70 是否具有相似的特性。我们特别想评估从植物组织中提取的与天然结合多肽相关的 HSP70 是否携带抗原衍生的多肽,并可用于激活抗原特异性免疫反应。到目前为止,HSP70 的这种应用还很少被研究。该分析首先通过结构建模植物蛋白并定义确保最大表达水平和从植物组织中最佳回收的条件来开始。然后,从瞬时表达异源“报告”蛋白的黄花烟叶片中纯化 HSP70。在纯化过程中,小心避免 HSP70 从植物细胞内的伴侣多肽中释放出来。随后对皮下给予纯化的 HSP70 的小鼠血清中的抗体滴度进行评估,结果表明它能有效地诱导针对植物表达的“报告”蛋白的体液免疫反应。总体结果表明,植物来源的 HSP70 与哺乳动物同源物具有结构和功能特性。这项研究为进一步研究奠定了基础,旨在确定从表达外源重组抗原的植物中提取的 HSP70 的特性,作为有效递呈这些抗原衍生多肽的现成免疫载体。