Literature DB >> 27037126

Biochemical and Structural Characterizations of Two Dictyostelium Cellobiohydrolases from the Amoebozoa Kingdom Reveal a High Level of Conservation between Distant Phylogenetic Trees of Life.

Sarah E Hobdey1, Brandon C Knott2, Majid Haddad Momeni3, Larry E Taylor1, Anna S Borisova3, Kara K Podkaminer1, Todd A VanderWall1, Michael E Himmel1, Stephen R Decker1, Gregg T Beckham4, Jerry Ståhlberg5.   

Abstract

UNLABELLED: Glycoside hydrolase family 7 (GH7) cellobiohydrolases (CBHs) are enzymes commonly employed in plant cell wall degradation across eukaryotic kingdoms of life, as they provide significant hydrolytic potential in cellulose turnover. To date, many fungal GH7 CBHs have been examined, yet many questions regarding structure-activity relationships in these important natural and commercial enzymes remain. Here, we present the crystal structures and a biochemical analysis of two GH7 CBHs from social amoeba: Dictyostelium discoideum Cel7A (DdiCel7A) and Dictyostelium purpureum Cel7A (DpuCel7A). DdiCel7A and DpuCel7A natively consist of a catalytic domain and do not exhibit a carbohydrate-binding module (CBM). The structures of DdiCel7A and DpuCel7A, resolved to 2.1 Å and 2.7 Å, respectively, are homologous to those of other GH7 CBHs with an enclosed active-site tunnel. Two primary differences between the Dictyostelium CBHs and the archetypal model GH7 CBH, Trichoderma reesei Cel7A (TreCel7A), occur near the hydrolytic active site and the product-binding sites. To compare the activities of these enzymes with the activity of TreCel7A, the family 1 TreCel7A CBM and linker were added to the C terminus of each of the Dictyostelium enzymes, creating DdiCel7ACBM and DpuCel7ACBM, which were recombinantly expressed in T. reesei DdiCel7ACBM and DpuCel7ACBM hydrolyzed Avicel, pretreated corn stover, and phosphoric acid-swollen cellulose as efficiently as TreCel7A when hydrolysis was compared at their temperature optima. The Ki of cellobiose was significantly higher for DdiCel7ACBM and DpuCel7ACBM than for TreCel7A: 205, 130, and 29 μM, respectively. Taken together, the present study highlights the remarkable degree of conservation of the activity of these key natural and industrial enzymes across quite distant phylogenetic trees of life. IMPORTANCE: GH7 CBHs are among the most important cellulolytic enzymes both in nature and for emerging industrial applications for cellulose breakdown. Understanding the diversity of these key industrial enzymes is critical to engineering them for higher levels of activity and greater stability. The present work demonstrates that two GH7 CBHs from social amoeba are surprisingly quite similar in structure and activity to the canonical GH7 CBH from the model biomass-degrading fungus T. reesei when tested under equivalent conditions (with added CBM-linker domains) on an industrially relevant substrate.
Copyright © 2016, American Society for Microbiology. All Rights Reserved.

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Year:  2016        PMID: 27037126      PMCID: PMC4959224          DOI: 10.1128/AEM.00163-16

Source DB:  PubMed          Journal:  Appl Environ Microbiol        ISSN: 0099-2240            Impact factor:   4.792


  65 in total

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3.  The neighbor-joining method: a new method for reconstructing phylogenetic trees.

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4.  The three-dimensional crystal structure of the catalytic core of cellobiohydrolase I from Trichoderma reesei.

Authors:  C Divne; J Ståhlberg; T Reinikainen; L Ruohonen; G Pettersson; J K Knowles; T T Teeri; T A Jones
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7.  A Dictyostelium cellobiohydrolase orthologue that affects developmental timing.

Authors:  Mizuho Kunii; Mami Yasuno; Yuki Shindo; Takefumi Kawata
Journal:  Dev Genes Evol       Date:  2013-11-16       Impact factor: 0.900

8.  Comparative genomics of the social amoebae Dictyostelium discoideum and Dictyostelium purpureum.

Authors:  Richard Sucgang; Alan Kuo; Xiangjun Tian; William Salerno; Anup Parikh; Christa L Feasley; Eileen Dalin; Hank Tu; Eryong Huang; Kerrie Barry; Erika Lindquist; Harris Shapiro; David Bruce; Jeremy Schmutz; Asaf Salamov; Petra Fey; Pascale Gaudet; Christophe Anjard; M Madan Babu; Siddhartha Basu; Yulia Bushmanova; Hanke van der Wel; Mariko Katoh-Kurasawa; Christopher Dinh; Pedro M Coutinho; Tamao Saito; Marek Elias; Pauline Schaap; Robert R Kay; Bernard Henrissat; Ludwig Eichinger; Francisco Rivero; Nicholas H Putnam; Christopher M West; William F Loomis; Rex L Chisholm; Gad Shaulsky; Joan E Strassmann; David C Queller; Adam Kuspa; Igor V Grigoriev
Journal:  Genome Biol       Date:  2011-02-28       Impact factor: 13.583

9.  Sequencing, biochemical characterization, crystal structure and molecular dynamics of cellobiohydrolase Cel7A from Geotrichum candidum 3C.

Authors:  Anna S Borisova; Elena V Eneyskaya; Kirill S Bobrov; Suvamay Jana; Anton Logachev; Dmitrii E Polev; Alla L Lapidus; Farid M Ibatullin; Umair Saleem; Mats Sandgren; Christina M Payne; Anna A Kulminskaya; Jerry Ståhlberg
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10.  Phaser crystallographic software.

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Journal:  J Appl Crystallogr       Date:  2007-07-13       Impact factor: 3.304

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  6 in total

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2.  Improving the thermal stability of cellobiohydrolase Cel7A from Hypocrea jecorina by directed evolution.

Authors:  Frits Goedegebuur; Lydia Dankmeyer; Peter Gualfetti; Saeid Karkehabadi; Henrik Hansson; Suvamay Jana; Vicky Huynh; Bradley R Kelemen; Paulien Kruithof; Edmund A Larenas; Pauline J M Teunissen; Jerry Ståhlberg; Christina M Payne; Colin Mitchinson; Mats Sandgren
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3.  Comparative insights into the saccharification potentials of a relatively unexplored but robust Penicillium funiculosum glycoside hydrolase 7 cellobiohydrolase.

Authors:  Funso Emmanuel Ogunmolu; Navya Bhatt Kammachi Jagadeesha; Rakesh Kumar; Pawan Kumar; Dinesh Gupta; Syed Shams Yazdani
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Review 4.  Biochemistry, Synthesis, and Applications of Bacterial Cellulose: A Review.

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5.  Correlation of structure, function and protein dynamics in GH7 cellobiohydrolases from Trichoderma atroviride, T. reesei and T. harzianum.

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Review 6.  Cellulases from Thermophiles Found by Metagenomics.

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Journal:  Microorganisms       Date:  2018-07-10
  6 in total

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