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Exposing the Secrets of Two Well-Known Lactobacillus casei Phages, J-1 and PL-1, by Genomic and Structural Analysis

机译:通过基因组和结构分析揭示两个著名的干酪乳杆菌噬菌体J-1和PL-1的秘密

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Bacteriophage J-1 was isolated in 1965 from an abnormal fermentation of Yakult using Lactobacillus casei strain Shirota, and a related phage, PL-1, was subsequently recovered from a strain resistant to J-1. Complete genome sequencing shows that J-1 and PL-1 are almost identical, but PL-1 has a deletion of 1.9 kbp relative to J-1, resulting in the loss of four predicted gene products involved in immunity regulation. The structural proteins were identified by mass spectrometry analysis. Similarly to phage A2, two capsid proteins are generated by a translational frameshift and undergo proteolytic processing. The structure of gene product 16 (gp16), a putative tail protein, was modeled based on the crystal structure of baseplate distal tail proteins (Dit) that form the baseplate hub in other Siphoviridae . However, two regions of the C terminus of gp16 could not be modeled using this template. The first region accounts for the differences between J-1 and PL-1 gp16 and showed sequence similarity to carbohydrate-binding modules (CBMs). J-1 and PL-1 GFP-gp16 fusions bind specifically to Lactobacillus casei/paracasei cells, and the addition of l-rhamnose inhibits binding. J-1 gp16 exhibited a higher affinity than PL-1 gp16 for cell walls of L. casei ATCC 27139 in phage adsorption inhibition assays, in agreement with differential adsorption kinetics observed for both phages in this strain. The data presented here provide insights into how Lactobacillus phages interact with their hosts at the first steps of infection.
机译:1965年,使用干酪乳杆菌Shirota从Yakult的异常发酵中分离出噬菌体J-1,随后从抗J-1的菌株中回收了相关的噬菌体PL-1。完整的基因组测序表明,J-1和PL-1几乎相同,但是PL-1相对于J-1缺失1.9 kbp,导致涉及免疫调节的四个预测基因产物丢失。通过质谱分析鉴定结构蛋白。与噬菌体A2类似,通过翻译移码产生两个衣壳蛋白并进行蛋白水解处理。基因产物16(gp16)的结构是推定的尾巴蛋白质,是根据形成其他剑叶病毒科中的基板轮毂的基板远侧尾巴蛋白质(Dit)的晶体结构建模的。但是,无法使用此模板对gp16的C末端的两个区域建模。第一个区域解释了J-1和PL-1 gp16之间的差异,并显示了与碳水化合物结合模块(CBM)的序列相似性。 J-1和PL-1 GFP-gp16融合蛋白与干酪乳杆菌/副干酪乳杆菌细胞特异性结合,添加1-鼠李糖可抑制结合。在噬菌体吸附抑制试验中,J-1 gp16对干酪乳杆菌ATCC 27139细胞壁的亲和力高于PL-1 gp16,这与该菌株中两种噬菌体的差异吸附动力学一致。此处提供的数据可洞悉乳酸菌噬菌体在感染初期如何与宿主相互作用。

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