Keyword search (4,163 papers available)

"Ye Z" Authored Publications:

Title Authors PubMed ID
1 Hyperbranched Polyethylene Ionomers Containing Quaternary Ammonium Ions and Their Functionalization of Nanomaterials Ye Z; Rahmatinejad J; Raisi B; Dai P; 40214570
ENCS
2 Synergistic Cathode Design for High-Performance Dual-Salt Magnesium/Lithium-Ion Batteries Using 2D/2D 1T/2H-MoS2@Ti3C2Tx MXene Nanocomposite Rahmatinejad J; Liu X; Raisi B; Ye Z; 38698578
ENCS
3 Alternative Oxidase: From Molecule and Function to Future Inhibitors Li J; Yang S; Wu Y; Wang R; Liu Y; Liu J; Ye Z; Tang R; Whiteway M; Lv Q; Yan L; 38524433
BIOLOGY
4 Pillar-Structured Ti3 C2 Tx MXene with Engineered Interlayer Spacing for High-Performance Magnesium Batteries Raisi B; Liu X; Rahmatinejad J; Ye Z; 38327158
ENCS
5 Effects of color cues on eye-hand coordination training with a mirror drawing task in virtual environment Alrubaye Z; Hudhud Mughrabi M; Manav B; Batmaz AU; 38288362
ENCS
6 1T-2H Mixed-Phase MoS2 Stabilized with a Hyperbranched Polyethylene Ionomer for Mg2+ /Li+ Co-Intercalation Toward High-Capacity Dual-Salt Batteries Rahmatinejad J; Raisi B; Liu X; Zhang X; Sadeghi Chevinli A; Yang L; Ye Z; 37691015
ENCS
7 A pH-Responsive phosphoprotein washing fluid for the removal of phenanthrene from contaminated peat moss in the cold region Yue R; An C; Ye Z; Li X; Li Q; Zhang P; Qu Z; Wan S; 36455665
ENCS
8 Exploring the characteristics, performance, and mechanisms of a magnetic-mediated washing fluid for the cleanup of oiled beach sand Yue R; An C; Ye Z; Chen X; Lee K; Zhang K; Wan S; Qu Z; 35780732
ENCS
9 Dynamic and Reprocessable Fluorinated Poly(hindered urea) Network Materials Containing Ionic Liquids to Enhance Triboelectric Performance Nellepalli P; Kim MP; Park J; Noh SM; Ye Z; Jung HW; Ko H; Oh JK; 35385641
CHEMBIOCHEM
10 Cleanup of oiled shorelines using a dual responsive nanoclay/sodium alginate surface washing agent Yue R; An C; Ye Z; Bi H; Chen Z; Liu X; Zhang X; Lee K; 34906587
ENCS
11 Fluorinated Sterically Bulky Mononuclear and Binuclear 2-Iminopyridylnickel Halides for Ethylene Polymerization: Effects of Ligand Frameworks and Remote Substituents Zhang Q; Lin W; Liu T; Ye Z; Liang T; Sun WH; 34778687
ENCS
12 A photo-Fenton nanocomposite ultrafiltration membrane for enhanced dye removal with self-cleaning properties Yue R; Raisi B; Rahmatinejad J; Ye Z; Barbeau B; Rahaman MS; 34273782
ENCS
13 Designing Ultrasmall Carbon Nanospheres with Tailored Sizes and Textural Properties for High-Rate High-Energy Supercapacitors Liu X; Vadiyar MM; Oh JK; Ye Z; 34229427
CHEMBIOCHEM
14 Macromolecularly Engineered Thermoreversible Heterogeneous Self-Healable Networks Encapsulating Reactive Multidentate Block Copolymer-Stabilized Carbon Nanotubes Zhang G; Patel T; Nellepalli P; Bhagat S; Hase H; Jazani AM; Salzmann I; Ye Z; Oh JK; 33988899
CHEMBIOCHEM
15 Cost-Effective Water-Soluble Poly(vinyl alcohol) as a Functional Binder for High-Sulfur-Loading Cathodes in Lithium-Sulfur Batteries. Liao J, Liu Z, Wang J, Ye Z 32309738
ENCS
16 Enhancement of synthetic Trichoderma-based enzyme mixtures for biomass conversion with an alternative family 5 glycosyl hydrolase from Sporotrichum thermophile. Ye Z, Zheng Y, Li B, Borrusch MS, Storms R, Walton JD 25295862
CSFG
17 Utilizing Waste Thermocol Sheets and Rusted Iron Wires to Fabricate Carbon-Fe3 O4 Nanocomposite-Based Supercapacitors: Turning Wastes into Value-Added Materials. Vadiyar MM, Liu X, Ye Z 29761664
ENCS

 

Title:Enhancement of synthetic Trichoderma-based enzyme mixtures for biomass conversion with an alternative family 5 glycosyl hydrolase from Sporotrichum thermophile.
Authors:Ye ZZheng YLi BBorrusch MSStorms RWalton JD
Link:https://www.ncbi.nlm.nih.gov/pubmed/25295862?dopt=Abstract
DOI:10.1371/journal.pone.0109885
Publication:PloS one
Keywords:
PMID:25295862 Category:PLoS One Date Added:2019-06-07
Dept Affiliation: CSFG
1 Department of Energy Great Lakes Bioenergy Research Center and Department of Energy Plant Research Laboratory, Michigan State University, East Lansing, Michigan, United States of America.
2 Centre for Structural and Functional Genomics, Concordia University, Montréal, Quebec, Canada.

Description:

Enhancement of synthetic Trichoderma-based enzyme mixtures for biomass conversion with an alternative family 5 glycosyl hydrolase from Sporotrichum thermophile.

PLoS One. 2014;9(10):e109885

Authors: Ye Z, Zheng Y, Li B, Borrusch MS, Storms R, Walton JD

Abstract

Enzymatic conversion of lignocellulosic materials to fermentable sugars is a limiting step in the production of biofuels from biomass. We show here that combining enzymes from different microbial sources is one way to identify superior enzymes. Extracts of the thermophilic fungus Sporotrichum thermophile (synonym Myceliophthora thermophila) gave synergistic release of glucose (Glc) and xylose (Xyl) from pretreated corn stover when combined with an 8-component synthetic cocktail of enzymes from Trichoderma reesei. The S. thermophile extracts were fractionated and an enhancing factor identified as endo-ß1,4-glucanase (StCel5A or EG2) of subfamily 5 of Glycosyl Hydrolase family 5 (GH5_5). In multi-component optimization experiments using a standard set of enzymes and either StCel5A or the ortholog from T. reesei (TrCel5A), reactions containing StCel5A yielded more Glc and Xyl. In a five-component optimization experiment (i.e., varying four core enzymes and the source of Cel5A), the optimal proportions for TrCel5A vs. StCel5A were similar for Glc yields, but markedly different for Xyl yields. Both enzymes were active on lichenan, glucomannan, and oat ß-glucan; however, StCel5A but not TrCel5A was also active on ß1,4-mannan, two types of galactomannan, and ß1,4-xylan. Phylogenetically, fungal enzymes in GH5_5 sorted into two clades, with StCel5A and TrCel5A belonging to different clades. Structural differences with the potential to account for the differences in performance were deduced based on the known structure of TrCel5A and a homology-based model of StCel5A, including a loop near the active site of TrCel5A and the presence of four additional Trp residues in the active cleft of StCel5A. The results indicate that superior biomass-degrading enzymes can be identified by exploring taxonomic diversity combined with assays in the context of realistic enzyme combinations and realistic substrates. Substrate range may be a key factor contributing to superior performance within GH5_5.

PMID: 25295862 [PubMed - indexed for MEDLINE]





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