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1.
沈俊涛  修志龙 《生物工程学报》2017,33(12):1901-1912
以细菌为基础的生物技术在蓬勃发展的同时也不断受到噬菌体感染的威胁,噬菌体感染已成为微生物发酵过程中的一个顽疾,其实质是噬菌体与细菌之间复杂的共进化关系。在漫长的进化过程中,噬菌体已经形成了多种针对细菌抗性系统的逃逸机制。合理的工厂设计、菌株的轮换策略和传统的基因工程方法能在一定程度上降低噬菌体感染的风险,但仍然无法避免。基于CRISPR-Cas系统的防治策略仅需噬菌体的序列信息就可以理性设计噬菌体抗性菌株,且可以通过叠加效应不断增强菌种抗性,从而避免噬菌体的逃逸;群体感应信号分子则可以从整体水平上调节细菌的噬菌体抗性。这些新发现为噬菌体感染问题的解决带了新的希望,而噬菌体基因组编辑技术和合成生物学的快速发展则将进一步加深人们对噬菌体感染防治领域的认识。  相似文献   

2.
噬菌体广泛存在于生态环境中。细菌在与噬菌体长期的共进化过程中,衍化出了多种针对噬茵体感染的抗性机制。我们从宿主菌的抑制吸附、阻止噬菌体DNA注入、切断噬菌体DNA和影响其功能及流产感染等方面,对宿主菌抵抗噬菌体感染的机制进行了综述。  相似文献   

3.
细菌与噬菌体相互抵抗机制研究进展   总被引:1,自引:1,他引:0  
噬菌体作为一种侵染细菌的病毒,能够特异性识别宿主细菌。近年来,抗生素的过度使用导致耐药细菌的出现,噬菌体有望成为对抗耐药细菌的新武器。在细菌与噬菌体长期共进化过程中,二者都演化出一系列抵御策略。本文从抑制噬菌体吸附、阻止噬菌体DNA进入、切割噬菌体基因组、流产感染以及群体感应对噬菌体的调控等方面,对细菌抵抗噬菌体的机制以及噬菌体应对细菌的策略进行了综述,同时还列举了细菌和噬菌体相互抵抗机制的检测方法,以期为噬菌体在细菌控制中的应用以及探究细菌抵抗噬菌体的机制提供理论依据。  相似文献   

4.
噬菌体又称细菌病毒,是公认最丰富的微生物,也是最多样性的,这种多样性是适应所面对选择性压力例如普遍存在宿主菌的噬菌体抗性机制。噬菌体通过6步(吸附、注入、复制、转录翻译、组装和释放)侵入细菌并使之裂解,但是当噬菌体感染细菌,就会面临细菌抗噬菌体的机制,宿主菌能够进化出多种抗噬菌体的机制来避免噬菌体的侵染和裂解。本文就对宿主菌抗噬菌体各种机制作一综述。  相似文献   

5.
CRISPR-Cas系统与细菌和噬菌体的共进化   总被引:4,自引:0,他引:4  
Li TM  Du B 《遗传》2011,33(3):213-218
细菌在适应噬菌体攻击的过程中,进化了多种防御系统,噬菌体在细菌的选择压力下,也在不断进化反防御策略,双方的这种进化关系与发生机制一直尚不完全清楚。近年在细菌和古细菌中发现一种新的免疫防御系统,即CRISPR-Cas(clustered regularly interspaced short palindromic repeats-CRISPR-associated system)系统。在对其功能和作用机制深入研究的同时,也不断地揭示了细菌和噬菌体之间的共进化关系。为此,文章在介绍原核细胞中CRISPR-Cas系统介导的免疫机制基础上,重点综述了CRISPR系统在细菌和噬菌体进化中的作用。  相似文献   

6.
抗生素治疗尽管有几十年有效治疗的历史,但随着越来越多耐/抗药性细菌的出现,细菌对抗生素的抗药性已成为一个大问题。噬菌体治疗是使用噬菌体作为抗菌剂来感染细菌株系,它一直是人们倡导的一个很有前途的常规抗生素治疗的替代方案。然而,由于细菌与噬菌体的协同进化中,细菌可以通过多种机制获得对噬菌体的抗性。因此,人们对噬菌体治疗抱有期望的同时,也关注噬菌体治疗长时间的使用之后,是否会与抗生素使用之后结果相类似,导致抗性细菌病原菌感染的治疗困难。综述了细菌-噬菌体协同进化中细菌病原菌对有感染能力的噬菌体是否会产生抗性,及其在噬菌体治疗中影响的争论,并展望了噬菌体治疗的潜在前景。  相似文献   

7.
噬菌体是细菌的天敌,它利用宿主的细胞机制完成自身的复制。在感染过程中噬菌体基因组进入细菌细胞后立即产生调节或重新定向宿主特定功能的蛋白质(即抑菌蛋白),以逃避多种细菌的防御机制或改变宿主的分子代谢机制。研究发现,这些噬菌体编码的抑菌蛋白可抑制细菌分裂,干扰细菌遗传物质的复制、转录及降解,影响CRISPR介导的细菌免疫以及代谢。明确噬菌体编码的抑菌蛋白如何影响这些宿主的防御或分子代谢机制可以优化目前基于噬菌体的抗菌策略,找出控制细菌感染的新途径,为抑菌药物的发现和设计打开新的大门。本文就近年来发现的噬菌体编码的抑菌蛋白及其抑菌机制的研究进展进行综述。  相似文献   

8.
李祎 《微生物学通报》2021,48(9):3305-3313
细菌在与噬菌体的长期共进化过程中形成多种抵抗噬菌体侵染的机制,其中群体感应参与的细菌抵御噬菌体侵染机制成为近年来的研究热点。群体感应与噬菌体之间的相互作用是复杂和多样的,本文将重点综述群体感应在噬菌体侵染中的作用、调控在噬菌体裂解-溶源转变的作用,以及群体感应与噬菌体的其他相互影响等内容,为噬菌体在细菌性疾病的治疗提供理论依据。  相似文献   

9.
解析细菌免疫系统   总被引:1,自引:0,他引:1  
李铁民 《微生物学报》2011,51(10):1297-1303
在细菌与噬菌体之间的生存斗争中,细菌面临噬菌体的威胁,进化了多种免疫机制。在这些免疫机制中,有的采用被动适应,有的采用主动防御的策略,阻止噬菌体DNA进入细胞,裂解侵入的DNA,或以宿主细胞死亡的方式,阻止噬菌体的扩散。各种机制的相互配合,在细菌细胞中构成了一个有效的免疫系统。本文在综述细菌免疫系统最新研究进展基础上,重点分析讨论了细菌免疫系统的作用模式,以及细菌免疫系统与噬菌体之间的进化关系。  相似文献   

10.
噬菌体是能感染细菌的病毒。为了抵抗噬菌体的感染,细菌进化出多种抵抗噬菌体感染的机制,这些机制的阐析极大地促进了基因编辑领域的发展,同时也为噬菌体治疗的开展奠定了基础。本文就细菌针对噬菌体感染的各个环节所进行的抵抗及其分子机制进行了简要综述,同时讨论了这些防御系统的存在对细菌自身的影响,分析了当前细菌耐受噬菌体机制研究存在的局限性,并对未来研究进行了展望。  相似文献   

11.
12.
Increases in multidrug-resistant strains of Serratia marcescens are of great concern in pediatrics, especially in neonatal intensive care units. In the search for bacteriophages to control infectious diseases caused by multidrug-resistant S. marcescens , three phages (KSP20, KSP90, and KSP100) were isolated from environmental water and were characterized morphologically and genetically. KSP20 and KSP90 belonged to morphotype A1 of the family Myoviridae , and KSP100 belonged to morphotype C3 of the family Podoviridae . Analysis of the DNA region coding virion proteins, together with their morphological features, indicated that KSP20, KSP90, and KSP100 were related to the P2-like phage (temperate), T4-type phage (virulent), and phiEco32 phage (virulent), respectively. Based on amino acid sequences of the major capsid protein, KSP90 formed a new branch with a Stenotrophomonas maltophilia phage, Smp14, in the T4-type phage phylogeny. Both Smp14 and phiEco32 have been reported as potential therapeutic phages. These results suggest that KSP90 and KSP100 may be candidate therapeutic phages to control S. marcescens infection.  相似文献   

13.
Pseudomonas aeruginosa phage EL is a dsDNA phage related to the giant phiKZ-like Myoviridae. The EL genome sequence comprises 211,215 bp and has 201 predicted open reading frames (ORFs). The EL genome does not share DNA sequence homology with other viruses and micro-organisms sequenced to date. However, one-third of the predicted EL gene products (gps) shares similarity (Blast alignments of 17-55% amino acid identity) with phiKZ proteins. Comparative EL and phiKZ genomics reveals that these giant phages are an example of substantially diverged genetic mosaics. Based on the position of similar EL and phiKZ predicted gene products, five genome regions can be delineated in EL, four of which are relatively conserved between EL and phiKZ. Region IV, a 17.7 kb genome region with 28 predicted ORFs, is unique to EL. Fourteen EL ORFs have been assigned a putative function based on protein similarity. Assigned proteins are involved in DNA replication and nucleotide metabolism (NAD+-dependent DNA ligase, ribonuclease HI, helicase, thymidylate kinase), host lysis and particle structure. EL-gp146 is the first chaperonin GroEL sequence identified in a viral genome. Besides a putative transposase, EL harbours predicted mobile endonucleases related to H-N-H and LAGLIDADG homing endonucleases associated with group I intron and intein intervening sequences.  相似文献   

14.
AIMS: To investigate irregular colony morphology formation in Salmonella enterica serovar Typhimurium DPC6046 in the presence of a lytic phage, Felix 01. METHODS AND RESULTS: Phage-resistant derivatives of the parent strain DPC6046 were isolated which exhibited an irregular colony morphology. These were subjected to viability studies by using confocal scanning laser microscopy and live/dead BacLight stain to evaluate the cell viability within the colony. The phenomenon was also observed with other S. enterica serotypes tested which were normally sensitive to phage Felix. In the case of strain DPC6046, dead cells were clearly evident at the irregular edges of the phage-resistant colonies in locations where the cell density was lower. This colony morphology was not apparent with two other Salmonella phages tested. CONCLUSIONS: These findings support the hypothesis that the unusual morphology is due to reversion to phage sensitivity and consequent cell death within the colony as it forms. SIGNIFICANCE AND IMPACT OF THE STUDY: The irregular colony morphology observed is peculiar to phage Felix. The confocal scanning laser microscopy methodology allowed the basis for the irregular morphology to be elucidated.  相似文献   

15.
One of the limitations of the use of phage antibody libraries in high throughput selections is the production of sufficient phage antibody library at the appropriate quality. Here, we successfully adapt a bioreactor-based protocol for the production of phage peptide libraries to the production of phage antibody libraries. The titers obtained in the stirred-tank bioreactor are 4 to 5 times higher than in a standard shake flask procedure, and the quality of the phage antibody library produced is indistinguishable to that produced using standard procedures as assessed by Western blotting and functional selections. Availability of this protocol will facilitate the use of phage antibody libraries in high-throughput scale selections.  相似文献   

16.
《MABS-AUSTIN》2013,5(1):26-31
One of the limitations of the use of phage antibody libraries in high throughput selections is the production of sufficient phage antibody library at the appropriate quality. Here, we successfully adapt a bioreactor-based protocol for the production of phage peptide libraries to the production of phage antibody libraries. The titers obtained in the stirred-tank bioreactor are 4 to 5 times higher than in a standard shake flask procedure, and the quality of the phage antibody library produced is indistinguishable to that produced using standard procedures as assessed by Western blotting and functional selections. Availability of this protocol will facilitate the use of phage antibody libraries in high-throughput scale selections.  相似文献   

17.
18.
Protein III (pIII) of filamentous phage is required for both the beginning and the end of the phage life cycle. The infection starts by binding of the N-terminal N2 and N1 domains to the primary and secondary host receptors, F pilus and TolA protein, respectively, whereas the life cycle terminates by the C-terminal domain-mediated release of the membrane-anchored virion from the cell. It has been assumed that the role of the C-terminal domain of pIII in the infection is that of a tether for the receptor-binding domains N1N2 to the main body of the virion. In a poorly understood process that follows receptor binding, the virion disassembles as its protein(s) become integrated into the host inner membrane, resulting in the phage genome entry into the bacterial cytoplasm. To begin revealing the mechanism of this process, we showed that tethering the functional N1N2 receptor-binding domain to the virion via termination-incompetent C domain abolishes infection. This infection defect cannot be complemented by in trans supply of the functional C domain. Therefore, the C domain of pIII acts in concert with the receptor-binding domains to mediate the post receptor binding events in the infection. Based on these findings, we propose a model in which binding of the N1 domain to the periplasmic portion of TolA, the secondary receptor, triggers in cis a conformational change in the C domain, and that this change opens or unlocks the pIII end of the virion, allowing the entry phase of infection to proceed. To our knowledge, this is the first virus that uses the same protein domain both for the insertion into and release from the host membrane.  相似文献   

19.
多肽噬菌体展示   总被引:4,自引:2,他引:2  
噬菌体展示技术已被广泛地应用于生物学研究的各个方面.利用它可融合表达多肽、蛋白质结构域和蛋白质.尤其是多肽噬菌体展示,已被作为一种便利的研究工具去发现和研究那些与受体、酶、凝集素、抗体、核酸以及其他生物分子亲和的多肽配基和酶的底物专一性,该技术在药物的发现,疫苗的设计等医学领域也有着潜在的应用价值.  相似文献   

20.
Bacteriophages are an invaluable source of novel genetic diversity. Sequencing of phage genomes can reveal new proteins with potential uses as biotechnological and medical tools, and help unravel the diversity of biological mechanisms employed by phages to take over the host during viral infection. Aiming to expand the available collection of phage genomes, we have isolated, sequenced, and assembled the genome sequences of four phages that infect the clinical pathogen Klebsiella pneumoniae: vB_KpnP_FBKp16, vB_KpnP_FBKp27, vB_KpnM_FBKp34, and Jumbo phage vB_KpnM_FBKp24. The four phages show very low (0–13%) identity to genomic phage sequences deposited in the GenBank database. Three of the four phages encode tRNAs and have a GC content very dissimilar to that of the host. Importantly, the genome sequences of the phages reveal potentially novel DNA packaging mechanisms as well as distinct clades of tubulin spindle and nucleus shell proteins that some phages use to compartmentalize viral replication. Overall, this study contributes to uncovering previously unknown virus diversity, and provides novel candidates for phage therapy applications against antibiotic-resistant K. pneumoniae infections.  相似文献   

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