Literature DB >> 28555641

A parts list for fungal cellulosomes revealed by comparative genomics.

Charles H Haitjema1, Sean P Gilmore1, John K Henske1, Kevin V Solomon1, Randall de Groot1, Alan Kuo2, Stephen J Mondo2, Asaf A Salamov2, Kurt LaButti2, Zhiying Zhao2, Jennifer Chiniquy2, Kerrie Barry2, Heather M Brewer3, Samuel O Purvine3, Aaron T Wright4, Matthieu Hainaut5,6, Brigitte Boxma7, Theo van Alen7, Johannes H P Hackstein7, Bernard Henrissat5,6,8, Scott E Baker3, Igor V Grigoriev2,9, Michelle A O'Malley1.   

Abstract

Cellulosomes are large, multiprotein complexes that tether plant biomass-degrading enzymes together for improved hydrolysis1. These complexes were first described in anaerobic bacteria, where species-specific dockerin domains mediate the assembly of enzymes onto cohesin motifs interspersed within protein scaffolds1. The versatile protein assembly mechanism conferred by the bacterial cohesin-dockerin interaction is now a standard design principle for synthetic biology2,3. For decades, analogous structures have been reported in anaerobic fungi, which are known to assemble by sequence-divergent non-catalytic dockerin domains (NCDDs)4. However, the components, modular assembly mechanism and functional role of fungal cellulosomes remain unknown5,6. Here, we describe a comprehensive set of proteins critical to fungal cellulosome assembly, including conserved scaffolding proteins unique to the Neocallimastigomycota. High-quality genomes of the anaerobic fungi Anaeromyces robustus, Neocallimastix californiae and Piromyces finnis were assembled with long-read, single-molecule technology. Genomic analysis coupled with proteomic validation revealed an average of 312 NCDD-containing proteins per fungal strain, which were overwhelmingly carbohydrate active enzymes (CAZymes), with 95 large fungal scaffoldins identified across four genera that bind to NCDDs. Fungal dockerin and scaffoldin domains have no similarity to their bacterial counterparts, yet several catalytic domains originated via horizontal gene transfer with gut bacteria. However, the biocatalytic activity of anaerobic fungal cellulosomes is expanded by the inclusion of GH3, GH6 and GH45 enzymes. These findings suggest that the fungal cellulosome is an evolutionarily chimaeric structure-an independently evolved fungal complex that co-opted useful activities from bacterial neighbours within the gut microbiome.

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Year:  2017        PMID: 28555641     DOI: 10.1038/nmicrobiol.2017.87

Source DB:  PubMed          Journal:  Nat Microbiol        ISSN: 2058-5276            Impact factor:   17.745


  38 in total

1.  Robust and effective methodologies for cryopreservation and DNA extraction from anaerobic gut fungi.

Authors:  Kevin V Solomon; John K Henske; Michael K Theodorou; Michelle A O'Malley
Journal:  Anaerobe       Date:  2015-11-24       Impact factor: 3.331

2.  RAxML-VI-HPC: maximum likelihood-based phylogenetic analyses with thousands of taxa and mixed models.

Authors:  Alexandros Stamatakis
Journal:  Bioinformatics       Date:  2006-08-23       Impact factor: 6.937

3.  Functional assembly of a multi-enzyme methanol oxidation cascade on a surface-displayed trifunctional scaffold for enhanced NADH production.

Authors:  Fang Liu; Scott Banta; Wilfred Chen
Journal:  Chem Commun (Camb)       Date:  2013-03-28       Impact factor: 6.222

4.  Nonhybrid, finished microbial genome assemblies from long-read SMRT sequencing data.

Authors:  Chen-Shan Chin; David H Alexander; Patrick Marks; Aaron A Klammer; James Drake; Cheryl Heiner; Alicia Clum; Alex Copeland; John Huddleston; Evan E Eichler; Stephen W Turner; Jonas Korlach
Journal:  Nat Methods       Date:  2013-05-05       Impact factor: 28.547

5.  Cellulases and hemicellulases of the anaerobic fungus Piromyces constitute a multiprotein cellulose-binding complex and are encoded by multigene families.

Authors:  B R Ali; L Zhou; F M Graves; R B Freedman; G W Black; H J Gilbert; G P Hazelwood
Journal:  FEMS Microbiol Lett       Date:  1995-01-01       Impact factor: 2.742

6.  Conserved repeat motifs and glucan binding by glucansucrases of oral streptococci and Leuconostoc mesenteroides.

Authors:  Deepan S H Shah; Gilles Joucla; Magali Remaud-Simeon; Roy R B Russell
Journal:  J Bacteriol       Date:  2004-12       Impact factor: 3.490

7.  Phosphorylation of spore coat proteins by a family of atypical protein kinases.

Authors:  Kim B Nguyen; Anju Sreelatha; Eric S Durrant; Javier Lopez-Garrido; Anna Muszewska; Małgorzata Dudkiewicz; Marcin Grynberg; Samantha Yee; Kit Pogliano; Diana R Tomchick; Krzysztof Pawłowski; Jack E Dixon; Vincent S Tagliabracci
Journal:  Proc Natl Acad Sci U S A       Date:  2016-05-16       Impact factor: 11.205

8.  Rnnotator: an automated de novo transcriptome assembly pipeline from stranded RNA-Seq reads.

Authors:  Jeffrey Martin; Vincent M Bruno; Zhide Fang; Xiandong Meng; Matthew Blow; Tao Zhang; Gavin Sherlock; Michael Snyder; Zhong Wang
Journal:  BMC Genomics       Date:  2010-11-24       Impact factor: 3.969

9.  trimAl: a tool for automated alignment trimming in large-scale phylogenetic analyses.

Authors:  Salvador Capella-Gutiérrez; José M Silla-Martínez; Toni Gabaldón
Journal:  Bioinformatics       Date:  2009-06-08       Impact factor: 6.937

10.  2016 update of the PRIDE database and its related tools.

Authors:  Juan Antonio Vizcaíno; Attila Csordas; Noemi del-Toro; José A Dianes; Johannes Griss; Ilias Lavidas; Gerhard Mayer; Yasset Perez-Riverol; Florian Reisinger; Tobias Ternent; Qing-Wei Xu; Rui Wang; Henning Hermjakob
Journal:  Nucleic Acids Res       Date:  2015-11-02       Impact factor: 16.971

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  46 in total

1.  Horizontal Gene Transfer as an Indispensable Driver for Evolution of Neocallimastigomycota into a Distinct Gut-Dwelling Fungal Lineage.

Authors:  Chelsea L Murphy; Noha H Youssef; Radwa A Hanafy; M B Couger; Jason E Stajich; Yan Wang; Kristina Baker; Sumit S Dagar; Gareth W Griffith; Ibrahim F Farag; T M Callaghan; Mostafa S Elshahed
Journal:  Appl Environ Microbiol       Date:  2019-07-18       Impact factor: 4.792

Review 2.  The biotechnological potential of anaerobic fungi on fiber degradation and methane production.

Authors:  Yanfen Cheng; Qicheng Shi; Ruolin Sun; Dong Liang; Yuanfei Li; Yuqi Li; Wei Jin; Weiyun Zhu
Journal:  World J Microbiol Biotechnol       Date:  2018-10-01       Impact factor: 3.312

3.  The importance and future of biochemical engineering.

Authors:  Timothy A Whitehead; Scott Banta; William E Bentley; Michael J Betenbaugh; Christina Chan; Douglas S Clark; Corinne A Hoesli; Michael C Jewett; Beth Junker; Mattheos Koffas; Rashmi Kshirsagar; Amanda Lewis; Chien-Ting Li; Costas Maranas; E Terry Papoutsakis; Kristala L J Prather; Steffen Schaffer; Laura Segatori; Ian Wheeldon
Journal:  Biotechnol Bioeng       Date:  2020-05-29       Impact factor: 4.530

Review 4.  Function, distribution, and annotation of characterized cellulases, xylanases, and chitinases from CAZy.

Authors:  Stanley T C Nguyen; Hannah L Freund; Joshua Kasanjian; Renaud Berlemont
Journal:  Appl Microbiol Biotechnol       Date:  2018-01-22       Impact factor: 4.813

5.  Co-cultivation of the anaerobic fungus Anaeromyces robustus with Methanobacterium bryantii enhances transcription of carbohydrate active enzymes.

Authors:  Candice L Swift; Jennifer L Brown; Susanna Seppälä; Michelle A O'Malley
Journal:  J Ind Microbiol Biotechnol       Date:  2019-05-14       Impact factor: 3.346

6.  Genomic insights into the phylogeny and biomass-degrading enzymes of rumen ciliates.

Authors:  Zongjun Li; Xiangnan Wang; Yu Zhang; Zhongtang Yu; Tingting Zhang; Xuelei Dai; Xiangyu Pan; Ruoxi Jing; Yueyang Yan; Yangfan Liu; Shan Gao; Fei Li; Youqin Huang; Jian Tian; Junhu Yao; XvPeng Xing; Tao Shi; Jifeng Ning; Bin Yao; Huoqing Huang; Yu Jiang
Journal:  ISME J       Date:  2022-08-19       Impact factor: 11.217

Review 7.  Integrating Systems and Synthetic Biology to Understand and Engineer Microbiomes.

Authors:  Patrick A Leggieri; Yiyi Liu; Madeline Hayes; Bryce Connors; Susanna Seppälä; Michelle A O'Malley; Ophelia S Venturelli
Journal:  Annu Rev Biomed Eng       Date:  2021-03-29       Impact factor: 9.590

8.  Anaerobic gut fungi are an untapped reservoir of natural products.

Authors:  Candice L Swift; Katherine B Louie; Benjamin P Bowen; Heather M Olson; Samuel O Purvine; Asaf Salamov; Stephen J Mondo; Kevin V Solomon; Aaron T Wright; Trent R Northen; Igor V Grigoriev; Nancy P Keller; Michelle A O'Malley
Journal:  Proc Natl Acad Sci U S A       Date:  2021-05-04       Impact factor: 11.205

9.  The actin networks of chytrid fungi reveal evolutionary loss of cytoskeletal complexity in the fungal kingdom.

Authors:  Sarah M Prostak; Kristyn A Robinson; Margaret A Titus; Lillian K Fritz-Laylin
Journal:  Curr Biol       Date:  2021-02-08       Impact factor: 10.834

10.  Cellulosome Localization Patterns Vary across Life Stages of Anaerobic Fungi.

Authors:  Stephen P Lillington; William Chrisler; Charles H Haitjema; Sean P Gilmore; Chuck R Smallwood; Vaithiyalingam Shutthanandan; James E Evans; Michelle A O'Malley
Journal:  mBio       Date:  2021-06-01       Impact factor: 7.867

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