Autophagy-related gene ATG13 is involved in control of xylose alcoholic fermentation in the thermotolerant methylotrophic yeast Ogataea polymorpha

被引:7
作者
Dmytruk, Kostyantyn V. [1 ]
Ruchala, Justyna [2 ]
Grabek-Lejko, Dorota [2 ]
Puchalski, Czeslaw [2 ]
Bulbotka, Nina V. [1 ]
Sibirny, Andriy A. [1 ,2 ]
机构
[1] Inst Cell Biol, Dept Mol Genet & Biotechnol, Drahomanov Str 14-16, UA-79005 Lvov, Ukraine
[2] Univ Rzeszow, Dept Biotechnol & Microbiol, Zelwerowicza 4, UA-35601 Rzeszow, Ukraine
关键词
ATG13; Ogataea polymorpha; xylose fermentation; regulation; pexophagy; HANSENULA-POLYMORPHA; ETHANOL-PRODUCTION; OVEREXPRESSION; MUTAGENESIS; INTEGRATION; PROTEINS;
D O I
10.1093/femsyr/foy010
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Lignocellulosic biomass belongs to main sustainable renewable sources for global energy supply. One of the main challenges in the conversion of saccharified lignocellulosic biomass into bioethanol is the utilization of xylose, since lignocellulosic feedstocks contain a significant amount of this pentose. The non-conventional thermotolerant yeast Ogataea polymorpha naturally ferments xylose to ethanol at elevated temperatures (45 degrees C). Studying the molecular mechanisms of regulation of xylose metabolism is a promising way toward increased xylose conversion to ethanol. Insertional mutagenesis was applied to yeast O. polymorpha to identify genes involved in regulation of xylose fermentation. An insertional mutant selected as 3-bromopyruvate resistant strain possessed 50% increase in ethanol production as compared to the parental strain. Increase in ethanol production was caused by disruption of an autophagy-related gene ATG13. Involvement of Atg13 in regulation of xylose fermentation was confirmed by deletion of that gene. The atg13 Delta strain also produced an elevated amount of ethanol from xylose. Insertion in ATG13 gene did not disrupt HORMA domain and did not lead to defects in autophagy whereas knock out of this gene impaired autophagy process. We suggest that Atg13 plays two different functions and its role in regulation of xylose fermentation differs from that in autophagy.
引用
收藏
页数:8
相关论文
共 33 条
[1]  
Alers S, 2014, J BIOL CHEM, V10, P944
[2]  
Dmytruk K. V., 2016, Bioethanol, V2, P24
[3]   Insertion mutagenesis of the yeast Candida famata (Debaryomyces hansenii) by random integration of linear DNA fragments [J].
Dmytruk, Kostyantyn V. ;
Voronovsky, Andriy Y. ;
Sibirny, Andriy A. .
CURRENT GENETICS, 2006, 50 (03) :183-191
[4]  
Dmytruk KV., 2017, Biotechnology of Yeasts and Filamentous Fungi, P1
[5]   Overexpression of bacterial xylose isomerase and yeast host xylulokinase improves xylose alcoholic fermentation in the thermotolerant yeast Hansenula polymorpha [J].
Dmytruk, Olena V. ;
Voronovsky, Andriy Y. ;
Abbas, Charles A. ;
Dmytruk, Kostyantyn V. ;
Ishchuk, Olena P. ;
Sibirny, Andriy A. .
FEMS YEAST RESEARCH, 2008, 8 (01) :165-173
[6]   Engineering of xylose reductase and overexpression of xylitol dehydrogenase and xylulokinase improves xylose alcoholic fermentation in the thermotolerant yeast Hansenula polymorpha [J].
Dmytruk, Olena V. ;
Dmytruk, Kostyantyn V. ;
Abbas, Charles A. ;
Voronovsky, Andriy Y. ;
Sibirny, Andriy A. .
MICROBIAL CELL FACTORIES, 2008, 7 (1)
[7]   HIGHLY-EFFICIENT ELECTROTRANSFORMATION OF THE YEAST HANSENULA-PALYMORPHA [J].
FABER, KN ;
HAIMA, P ;
HARDER, W ;
VEENHUIS, M ;
AB, G .
CURRENT GENETICS, 1994, 25 (04) :305-310
[8]   The machinery of macroautophagy [J].
Feng, Yuchen ;
He, Ding ;
Yao, Zhiyuan ;
Klionsky, Daniel J. .
CELL RESEARCH, 2014, 24 (01) :24-41
[9]   3-Bromopyruvate: A New Targeted Antiglycolytic Agent and a Promise for Cancer Therapy [J].
Ganapathy-Kanniappan, S. ;
Vali, M. ;
Kunjithapatham, R. ;
Buijs, M. ;
Syed, L. H. ;
Rao, P. P. ;
Ota, S. ;
Kwak, B. K. ;
Loffroy, R. ;
Geschwind, J. F. .
CURRENT PHARMACEUTICAL BIOTECHNOLOGY, 2010, 11 (05) :510-517
[10]  
Gonchar MV, 2001, FOOD TECHNOL BIOTECH, V39, P37