日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Wood decay under anoxia by the brown-rot fungus Fomitopsis pinicola.

褐腐菌松生拟层孔菌在缺氧条件下引起的木材腐烂

Röllig Robert, Lebreton Annie, Grenga Lucia, Cresswell Rosalie, Lett Signe, Tryfona Theodora, Navarro David, Lambert Julien, Grisel Sacha, Gimbert Isabelle, Martens Helle Jakobe, Miotello Guylaine, Yu Xiaolan, Drula Elodie, Rosso Marie-Noelle, Tarrago Lionel, Henrissat Bernard, Johansen Katja, Dupree Ray, Armengaud Jean, Dupree Paul, Berrin Jean-Guy

Enzymatic saccharification of peat polysaccharides is limited by accessibility

泥炭多糖的酶促糖化受限于其可及性。

Thomsen, Jonas; Lett, Signe; Martens, Helle J; Sørensen, Helle; Kelleher, Darragh; Tryfona, Theodora; Dupree, Paul; Johansen, Katja S

Anions and citrate inhibit LsAA9A, a lytic polysaccharide monooxygenase (LPMO)

阴离子和柠檬酸盐抑制溶菌性多糖单加氧酶 (LPMO) LsAA9A

Di Domenico, Valerio; Theibich, Yusuf; Brander, Søren; Berrin, Jean-Guy; Johansen, Katja S; Frandsen, Kristian E H; Lo Leggio, Leila

A fungal lytic polysaccharide monooxygenase is required for cell wall integrity, thermotolerance, and virulence of the fungal human pathogen Cryptococcus neoformans

真菌裂解性多糖单加氧酶是新型隐球菌(一种人类致病真菌)细胞壁完整性、耐热性和毒力所必需的。

Probst, Corinna; Hallas-Møller, Magnus; Ipsen, Johan Ø; Brooks, Jacob T; Andersen, Karsten; Haon, Mireille; Berrin, Jean-Guy; Martens, Helle J; Nichols, Connie B; Johansen, Katja S; Alspaugh, J Andrew

SCAI promotes error-free repair of DNA interstrand crosslinks via the Fanconi anemia pathway

SCAI通过范可尼贫血途径促进DNA链间交联的无错修复。

Lisa Schubert ,Ivo A Hendriks # ,Emil P T Hertz # ,Wei Wu # ,Selene Sellés-Baiget ,Saskia Hoffmann ,Keerthana Stine Viswalingam ,Irene Gallina ,Satyakrishna Pentakota ,Bente Benedict ,Joachim Johansen ,Katja Apelt ,Martijn S Luijsterburg ,Simon Rasmussen ,Michael Lisby ,Ying Liu ,Michael L Nielsen ,Niels Mailand ,Julien P Duxin

Changes in active-site geometry on X-ray photoreduction of a lytic polysaccharide monooxygenase active-site copper and saccharide binding

X射线光还原裂解性多糖单加氧酶活性位点铜和糖结合过程中活性位点几何结构的变化

Tandrup, Tobias; Muderspach, Sebastian J; Banerjee, Sanchari; Santoni, Gianluca; Ipsen, Johan Ø; Hernández-Rollán, Cristina; Nørholm, Morten H H; Johansen, Katja S; Meilleur, Flora; Lo Leggio, Leila

Enzymatic Fibre Modification During Production of Dissolving Wood Pulp for Regenerated Cellulosic Materials

溶解木浆生产过程中的酶促纤维改性及其在再生纤维素材料中的应用

Loureiro, Pedro E G; Cadete, Sonia M S; Tokin, Radina; Evtuguin, Dmitry V; Lund, Henrik; Johansen, Katja S

The molecular basis of polysaccharide cleavage by lytic polysaccharide monooxygenases

裂解性多糖单加氧酶裂解多糖的分子基础

Frandsen, Kristian E H; Simmons, Thomas J; Dupree, Paul; Poulsen, Jens-Christian N; Hemsworth, Glyn R; Ciano, Luisa; Johnston, Esther M; Tovborg, Morten; Johansen, Katja S; von Freiesleben, Pernille; Marmuse, Laurence; Fort, Sébastien; Cottaz, Sylvain; Driguez, Hugues; Henrissat, Bernard; Lenfant, Nicolas; Tuna, Floriana; Baldansuren, Amgalanbaatar; Davies, Gideon J; Lo Leggio, Leila; Walton, Paul H

Catalase improves saccharification of lignocellulose by reducing lytic polysaccharide monooxygenase-associated enzyme inactivation

过氧化氢酶通过减少裂解性多糖单加氧酶相关酶的失活来提高木质纤维素的糖化率。

Scott, Brian R; Huang, Hong Zhi; Frickman, Jesper; Halvorsen, Rune; Johansen, Katja S

The binding of cellulase variants to dislocations: a semi-quantitative analysis based on CLSM (confocal laser scanning microscopy) images

纤维素酶变体与位错的结合:基于共聚焦激光扫描显微镜(CLSM)图像的半定量分析

Hidayat, Budi J; Weisskopf, Carmen; Felby, Claus; Johansen, Katja S; Thygesen, Lisbeth G