Pedro M Coutinho
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Explore the profile of Pedro M Coutinho including associated specialties, affiliations and a list of published articles.
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95
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16952
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Recent Articles
1.
Kumar R, Henrissat B, Coutinho P
Sci Rep
. 2019 Jul;
9(1):10346.
PMID: 31316086
The conformational itineraries taken by carbohydrate residues in the catalytic subsite of retaining glycoside hydrolases (GHs), harness the link between substrate conformation and reactivity. GHs' active sites may be described...
2.
Paes G, Navarro D, Benoit Y, Blanquet S, Chabbert B, Chaussepied B, et al.
Biotechnol Biofuels
. 2019 Apr;
12:76.
PMID: 30976326
Background: Lignocellulose biomass is known as a recalcitrant material towards enzymatic hydrolysis, increasing the process cost in biorefinery. In nature, filamentous fungi naturally degrade lignocellulose, using an arsenal of hydrolytic...
3.
Heiss-Blanquet S, Fayolle-Guichard F, Lombard V, Hebert A, Coutinho P, Groppi A, et al.
PLoS One
. 2016 Dec;
11(12):e0167216.
PMID: 27936240
Cost-effective biofuel production from lignocellulosic biomass depends on efficient degradation of the plant cell wall. One of the major obstacles for the development of a cost-efficient process is the lack...
4.
Ji B, Zhang S, Zhang W, Rouy Z, Alberto F, Santini C, et al.
Environ Microbiol
. 2016 Dec;
19(3):1103-1119.
PMID: 27902881
Magnetotactic bacteria (MTB) are a group of phylogenetically and physiologically diverse Gram-negative bacteria that synthesize intracellular magnetic crystals named magnetosomes. MTB are affiliated with three classes of Proteobacteria phylum, Nitrospirae...
5.
Venditto I, Luis A, Rydahl M, Schuckel J, Fernandes V, Vidal-Melgosa S, et al.
Proc Natl Acad Sci U S A
. 2016 Jun;
113(26):7136-41.
PMID: 27298375
The breakdown of plant cell wall (PCW) glycans is an important biological and industrial process. Noncatalytic carbohydrate binding modules (CBMs) fulfill a critical targeting function in PCW depolymerization. Defining the...
6.
Benoit I, Culleton H, Zhou M, DiFalco M, Aguilar-Osorio G, Battaglia E, et al.
Biotechnol Biofuels
. 2015 Aug;
8:107.
PMID: 26236396
Background: Plant biomass is the major substrate for the production of biofuels and biochemicals, as well as food, textiles and other products. It is also the major carbon source for...
7.
Navarro D, Rosso M, Haon M, Olive C, Bonnin E, Lesage-Meessen L, et al.
Biotechnol Biofuels
. 2014 Oct;
7(1):143.
PMID: 25320637
Background: Enzymatic breakdown of lignocellulosic biomass is a known bottleneck for the production of high-value molecules and biofuels from renewable sources. Filamentous fungi are the predominant natural source of enzymes...
8.
Brouwer H, Coutinho P, Henrissat B, de Vries R
Fungal Genet Biol
. 2014 Sep;
72:192-200.
PMID: 25192612
Carbohydrate-Active enZymes (CAZymes) form particularly interesting targets to study in plant pathogens. Despite the fact that many CAZymes are pathogenicity factors, oomycete CAZymes have received significantly less attention than effectors...
9.
Levasseur A, Lomascolo A, Chabrol O, Ruiz-Duenas F, Boukhris-Uzan E, Piumi F, et al.
BMC Genomics
. 2014 Jun;
15:486.
PMID: 24942338
Background: Saprophytic filamentous fungi are ubiquitous micro-organisms that play an essential role in photosynthetic carbon recycling. The wood-decayer Pycnoporus cinnabarinus is a model fungus for the study of plant cell...
10.
Poidevin L, Berrin J, Bennati-Granier C, Levasseur A, Herpoel-Gimbert I, Chevret D, et al.
Appl Microbiol Biotechnol
. 2014 Apr;
98(17):7457-69.
PMID: 24695830
The genome of the coprophilous fungus Podospora anserina harbors a large and highly diverse set of putative lignocellulose-acting enzymes. In this study, we investigated the enzymatic diversity of a broad...