Expression of an alkaline feruloyl esterases from thermophilic Chaetomium thermophilum and its boosting effect on delignification of pulp

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YunHua Hou ◽  
Zhihong Yang ◽  
Yanshun Yin ◽  
Zhen Meng ◽  
Jingzhen Wang ◽  
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2016 ◽  
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Author(s):  
Lorena Ramírez-Velasco ◽  
Mariana Armendáriz-Ruiz ◽  
Jorge Alberto Rodríguez-González ◽  
Marcelo Müller-Santos ◽  
Ali Asaff-Torres ◽  
...  

2007 ◽  
Vol 127 (2) ◽  
pp. 235-243 ◽  
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Vladimír Puchart ◽  
Mária Vršanská ◽  
Mária Mastihubová ◽  
Evangelos Topakas ◽  
Christina Vafiadi ◽  
...  

2006 ◽  
Vol 86 (11) ◽  
pp. 1623-1630 ◽  
Author(s):  
Craig B Faulds ◽  
Giuseppina Mandalari ◽  
Rosario B Lo Curto ◽  
Giuseppe Bisignano ◽  
Keith W Waldron

2015 ◽  
Vol 122 ◽  
pp. 212-217 ◽  
Author(s):  
Gülſah ÿzgün ◽  
Nevin Gül Karagüler ◽  
Ossi Turunen ◽  
Nicholas J. Turner ◽  
Barıſ Binay

Author(s):  
Gary Williamson ◽  
Craig Faulds
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2018 ◽  
Vol 41 ◽  
pp. 9-14 ◽  
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Adiphol Dilokpimol ◽  
Miia R. Mäkelä ◽  
Simona Varriale ◽  
Miaomiao Zhou ◽  
Gabriella Cerullo ◽  
...  

Author(s):  
Constantinos Katsimpouras ◽  
Io Antonopoulou ◽  
Paul Christakopoulos ◽  
Evangelos Topakas
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2018 ◽  
Vol 115 (39) ◽  
pp. E9085-E9094 ◽  
Author(s):  
Oliver Stehling ◽  
Jae-Hun Jeoung ◽  
Sven A. Freibert ◽  
Viktoria D. Paul ◽  
Sebastian Bänfer ◽  
...  

Maturation of iron-sulfur (Fe-S) proteins in eukaryotes requires complex machineries in mitochondria and cytosol. Initially, Fe-S clusters are assembled on dedicated scaffold proteins and then are trafficked to target apoproteins. Within the cytosolic Fe-S protein assembly (CIA) machinery, the conserved P-loop nucleoside triphosphatase Nbp35 performs a scaffold function. In yeast, Nbp35 cooperates with the related Cfd1, which is evolutionary less conserved and is absent in plants. Here, we investigated the potential scaffold function of human CFD1 (NUBP2) in CFD1-depleted HeLa cells by measuring Fe-S enzyme activities or 55Fe incorporation into Fe-S target proteins. We show that CFD1, in complex with NBP35 (NUBP1), performs a crucial role in the maturation of all tested cytosolic and nuclear Fe-S proteins, including essential ones involved in protein translation and DNA maintenance. CFD1 also matures iron regulatory protein 1 and thus is critical for cellular iron homeostasis. To better understand the scaffold function of CFD1-NBP35, we resolved the crystal structure of Chaetomium thermophilum holo-Cfd1 (ctCfd1) at 2.6-Å resolution as a model Cfd1 protein. Importantly, two ctCfd1 monomers coordinate a bridging [4Fe-4S] cluster via two conserved cysteine residues. The surface-exposed topology of the cluster is ideally suited for both de novo assembly and facile transfer to Fe-S apoproteins mediated by other CIA factors. ctCfd1 specifically interacted with ATP, which presumably associates with a pocket near the Cfd1 dimer interface formed by the conserved Walker motif. In contrast, ctNbp35 preferentially bound GTP, implying differential regulation of the two fungal scaffold components during Fe-S cluster assembly and/or release.


2020 ◽  
Vol 48 (12) ◽  
pp. 6996-7004 ◽  
Author(s):  
Daniel B Grabarczyk

Abstract The Tof1–Csm3 fork protection complex has a central role in the replisome—it promotes the progression of DNA replication forks and protects them when they stall, while also enabling cohesion establishment and checkpoint responses. Here, I present the crystal structure of the Tof1–Csm3 complex from Chaetomium thermophilum at 3.1 Å resolution. The structure reveals that both proteins together form an extended alpha helical repeat structure, which suggests a mechanical or scaffolding role for the complex. Expanding on this idea, I characterize a DNA interacting region and a cancer-associated Mrc1 binding site. This study provides the molecular basis for understanding the functions of the Tof1–Csm3 complex, its human orthologue the Timeless–Tipin complex and additionally the Drosophila circadian rhythm protein Timeless.


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