Specificity and diversity of Klebsiella pneumoniae phage-encoded capsule depolymerases

被引:0
|
作者
Cheetham, Max J. [1 ]
Huo, Yunlong [1 ]
Stroyakovski, Maria [1 ]
Cheng, Li [1 ]
Wan, Daniel [1 ]
Dell, Anne [2 ]
Santini, Joanne M. [1 ]
机构
[1] UCL, Dept Struct & Mol Biol, Div Biosci, London WC1E 6AA, England
[2] Imperial Coll London, Dept Life Sci, London SW7 2AZ, England
关键词
BACTERIOPHAGE; POLYSACCHARIDE; IDENTIFICATION; MECHANISMS; K1;
D O I
10.1042/EBC20240015
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Klebsiella pneumoniae is an opportunistic pathogen with significant clinical relevance. K. pneumoniae-targeting bacteriophages encode specific polysaccharide depolymerases with the ability to selectively degrade the highly varied protective capsules, allowing for access to the bacterial cell wall. Bacteriophage depolymerases have been proposed as novel antimicrobials to combat the rise of multidrug-resistant K. pneumoniae strains. These enzymes display extraordinary diversity, and are key determinants of phage host range, however with limited data available our current knowledge of their mechanisms and ability to predict their efficacy is limited. Insight into the resolved structures of Klebsiella-specific capsule depolymerases reveals varied catalytic mechanisms, with the intra-chain cleavage mechanism providing opportunities for recombinant protein engineering. A detailed comparison of the 58 characterised depolymerases hints at structural and mechanistic patterns, such as the conservation of key domains for substrate recognition and phage tethering, as well as diversity within groups of depolymerases that target the same substrate. Another way to understand depolymerase specificity is by analyzing the targeted capsule structures, as these may share similarities recognizable by bacteriophage depolymerases, leading to broader substrate specificities. Although we have only begun to explore the complexity of Klebsiella capsule depolymerases, further research is essential to thoroughly characterise these enzymes. This will be crucial for understanding their mechanisms, predicting their efficacy, and engineering optimized enzymes for therapeutic applications.
引用
收藏
页数:17
相关论文
共 50 条
  • [1] Diversity and Function of Phage Encoded Depolymerases
    Knecht, Leandra E.
    Veljkovic, Marjan
    Fieseler, Lars
    FRONTIERS IN MICROBIOLOGY, 2020, 10
  • [2] Development of Klebsiella pneumoniae Capsule Polysaccharide-Conjugated Vaccine Candidates Using Phage Depolymerases
    Lin, Tzu-Lung
    Yang, Feng-Ling
    Ren, Chien-Tai
    Pan, Yi-Jiun
    Liao, Kuo-Shiang
    Tu, I-Fan
    Chang, Yu-Pei
    Cheng, Yang-Yu
    Wu, Chung-Yi
    Wu, Shih-Hsiung
    Wang, Jin-Town
    FRONTIERS IN IMMUNOLOGY, 2022, 13
  • [3] Friunavirus Phage-Encoded Depolymerases Specific to Different Capsular Types of Acinetobacter baumannii
    Timoshina, Olga Y.
    Kasimova, Anastasia A.
    Shneider, Mikhail M.
    Matyuta, Ilya O.
    Nikolaeva, Alena Y.
    Evseev, Peter V.
    Arbatsky, Nikolay P.
    Shashkov, Alexander S.
    Chizhov, Alexander O.
    Shelenkov, Andrey A.
    Mikhaylova, Yulia V.
    Slukin, Pavel V.
    Volozhantsev, Nikolay V.
    Boyko, Konstantin M.
    Knirel, Yuriy A.
    Miroshnikov, Konstantin A.
    Popova, Anastasia V.
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2023, 24 (10)
  • [4] Phage-encoded depolymerases as a strategy for combating multidrug-resistant Acinetobacter baumannii
    Islam, Md Minarul
    Mahbub, Nasir Uddin
    Shin, Woo Shik
    Oh, Man Hwan
    FRONTIERS IN CELLULAR AND INFECTION MICROBIOLOGY, 2024, 14
  • [5] Phage-Encoded Endolysins
    Abdelrahman, Fatma
    Easwaran, Maheswaran
    Daramola, Oluwasegun I.
    Ragab, Samar
    Lynch, Stephanie
    Oduselu, Tolulope J.
    Khan, Fazal Mehmood
    Ayobami, Akomolafe
    Adnan, Fazal
    Torrents, Eduard
    Sanmukh, Swapnil
    El-Shibiny, Ayman
    ANTIBIOTICS-BASEL, 2021, 10 (02): : 1 - 31
  • [6] Identification of Two Depolymerases From Phage IME205 and Their Antivirulent Functions on K47 Capsule of Klebsiella pneumoniae
    Liu, Yannan
    Leung, Sharon Shui Yee
    Huang, Yong
    Guo, Yatao
    Jiang, Ning
    Li, Puyuan
    Chen, Jichao
    Wang, Rentao
    Bai, Changqing
    Mi, Zhiqiang
    Gao, Zhancheng
    FRONTIERS IN MICROBIOLOGY, 2020, 11
  • [7] Phage-Borne Depolymerases Decrease Klebsiella pneumoniae Resistance to Innate Defense Mechanisms
    Majkowska-Skrobek, Grazyna
    Latka, Agnieszka
    Berisio, Rita
    Squeglia, Flavia
    Maciejewska, Barbara
    Briers, Yves
    Drulis-Kawa, Zuzanna
    FRONTIERS IN MICROBIOLOGY, 2018, 9
  • [8] Characterisation of Bacteriophage-Encoded Depolymerases Selective for Key Klebsiella pneumoniae Capsular Exopolysaccharides
    Blundell-Hunter, George
    Enright, Mark C.
    Negus, David
    Dorman, Matthew J.
    Beecham, Gemma E.
    Pickard, Derek J.
    Wintachai, Phitchayapak
    Voravuthikunchai, Supayang P.
    Thomson, Nicholas R.
    Taylor, Peter W.
    FRONTIERS IN CELLULAR AND INFECTION MICROBIOLOGY, 2021, 11
  • [9] Catalytic diversity and cell wall binding repeats in the phage-encoded endolysins
    Broendum, Sebastian S.
    Buckle, Ashley M.
    McGowan, Sheena
    MOLECULAR MICROBIOLOGY, 2018, 110 (06) : 879 - 896
  • [10] Phage-encoded genes and Salmonella virulence
    Ali, TR
    Pallen, MJ
    MOLECULAR MICROBIOLOGY, 1998, 28 (05) : 1039 - 1040