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Expression pattern of arenicins - the antimicrobial peptides of polychaete Arenicola marina

机译:槟榔素的表达模式-斑鸠槟榔(Arenicola marina)的抗菌肽

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摘要

Immune responses of invertebrate animals are mediated through innate mechanisms, among which production of antimicrobial peptides play an important role. Although evolutionary Polychaetes represent an interesting group closely related to a putative common ancestor of other coelomates, their immune mechanisms still remain scarcely investigated. Previously our group has identified arenicins - new antimicrobial peptides of the lugworm Arenicola marina, since then these peptides were thoroughly characterized in terms of their structure and inhibitory potential. In the present study we addressed the question of the physiological functions of arenicins in the lugworm body. Using molecular and immunocytochemical methods we demonstrated that arencins are expressed in the wide range of the lugworm tissues - coelomocytes, body wall, extravasal tissue and the gut. The expression of arenicins is constitutive and does not depend on stimulation of various infectious stimuli. Most intensively arenicins are produced by mature coelomocytes where they function as killing agents inside the phagolysosome. In the gut and the body wall epithelia arenicins are released from producing cells via secretion as they are found both inside the epithelial cells and in the contents of the cuticle. Collectively our study showed that arenicins are found in different body compartments responsible for providing a first line of defence against infections, which implies their important role as key components of both epithelial and systemic branches of host defence.
机译:无脊椎动物的免疫反应是通过先天的机制介导的,其中抗菌肽的产生起着重要的作用。尽管进化多毛羚代表了一个有趣的群体,与其他腔皮动物的共同祖先密切相关,但它们的免疫机制仍很少被研究。此前,我们的研究小组已经确定了arenicins-夜蛾Arenicola marina的新抗菌肽,从那时起,这些肽就其结构和抑制潜力进行了全面表征。在本研究中,我们解决了g虫体内槟榔素的生理功能问题。使用分子和免疫细胞化学方法,我们证明了benccin在广泛的the虫组织中表达-粒细胞,体壁,血管外组织和肠道。槟榔素的表达是组成性的,并不依赖于各种感染性刺激的刺激。强度最高的槟榔素是由成熟的粒细胞产生的,它们在吞噬溶酶体内起杀伤剂的作用。在肠道和体壁上皮中,arenicins通过分泌从生产细胞中释放出来,因为它们在上皮细胞内部和表皮内容物中均被发现。总体而言,我们的研究表明,在不同的人体隔室中发现了槟榔素,它们为抵抗感染提供了第一道防线,这暗示着它们作为宿主防御的上皮和全身分支的关键组成部分的重要作用。

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