Capparelli Rosanna, Amoroso Maria Grazia, Palumbo Daniela, Iannaccone Marco, Faleri Claudia, Cresti Mauro
School of Biotechnological Sciences, University of Naples "Federico II", Via Università 133, 80055, Portici, Naples, Italy.
Dipartimento Scienze Ambientali, University of Siena, Via Mattioli 4, 53100, Siena, Italy.
Plant Mol Biol. 2005 Aug;58(6):857-867. doi: 10.1007/s11103-005-8270-9.
Puroindolines, for years largely investigated for their involvement in wheat kernel hardness, have recently attracted attention thanks to their possible role as antimicrobial proteins. With the aim to enhance our knowledge of these proteins we studied their localization in the kernel, and their antimicrobial activity in vitro against six different bacterial strains. Immunolocalization showed that both the PINs are strongly concentrated in the aleurone layer, but also highly present in the endosperm. Interestingly we observed that puroindolines not only have the same spatial distribution in the kernel, they are also always found co-localized. Their co-localization suggests that they could cooperate in defending the plant against pathogens. We therefore tested antimicrobial activity of PINA and PINB, and a putative synergism between these proteins. The results showed that the two polypeptides can in vitro inhibit growth of all the bacteria tested; furthermore when combined together they are able to enhance each other's toxicity. In view of their antimicrobial activity and of their natural presence in Triticum aestivum wheat flour, puroindolines look promising antibacterial agents and thus deserve further studies aimed at establishing their possible future applications in fields of food and health care. Since PINs were still detectable in bakery products, these proteins may be promising tools in investigating natural ways of food preservation.
多年来,人们主要研究麦醇溶蛋白与小麦籽粒硬度的关系,最近它们作为抗菌蛋白的潜在作用引起了关注。为了加深对这些蛋白质的了解,我们研究了它们在籽粒中的定位以及对六种不同细菌菌株的体外抗菌活性。免疫定位显示,两种麦醇溶蛋白都强烈集中在糊粉层,但在胚乳中也大量存在。有趣的是,我们观察到麦醇溶蛋白不仅在籽粒中具有相同的空间分布,而且总是共定位的。它们的共定位表明它们可能协同作用以保护植物免受病原体侵害。因此,我们测试了PINA和PINB的抗菌活性以及这些蛋白质之间可能的协同作用。结果表明,这两种多肽能够在体外抑制所有测试细菌的生长;此外,当它们组合在一起时,能够增强彼此的毒性。鉴于它们的抗菌活性以及在普通小麦面粉中的天然存在,麦醇溶蛋白似乎是有前途的抗菌剂,因此值得进一步研究,以确定它们在食品和医疗保健领域未来可能的应用。由于在烘焙产品中仍可检测到麦醇溶蛋白,这些蛋白质可能是研究食品天然保鲜方法的有前途的工具。