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Structural basis for directional chitin biosynthesis
by
Chen, Wei
, Yu, Ailing
, Merzendorfer, Hans
, Wang, Dong
, Chen, Lei
, Liu, Yuansheng
, Yuchi, Zhiguang
, Gong, Yong
, Sundarraj, Rajamanikandan
, Yang, Qing
, Cao, Peng
in
101/28
/ 14/19
/ 14/34
/ 140/125
/ 140/146
/ 38/1
/ 38/109
/ 631/45/607/1172
/ 631/535/1258/1259
/ 82/16
/ 82/29
/ 82/58
/ 82/80
/ 82/83
/ Acetylglucosamine - metabolism
/ Aminoglycosides - pharmacology
/ Binding Sites
/ Biosynthesis
/ Cell Membrane - metabolism
/ Cell membranes
/ Cellulose
/ Chemical synthesis
/ Chitin
/ Chitin - biosynthesis
/ Chitin - chemistry
/ Chitin - metabolism
/ Chitin - ultrastructure
/ Chitin synthase
/ Chitin Synthase - metabolism
/ Cryoelectron Microscopy
/ Discharge
/ Electron microscopy
/ Elongation
/ Enzyme kinetics
/ Glycosyltransferase
/ Humanities and Social Sciences
/ Hyaluronic acid
/ Microscopy
/ multidisciplinary
/ N-Acetylglucosamine
/ Nikkomycin
/ Phytophthora - enzymology
/ Polymers
/ Root rot
/ Science
/ Science (multidisciplinary)
/ Soybeans
/ Spectrum analysis
/ Substrates
/ Uridine Diphosphate - metabolism
/ Uridine Diphosphate N-Acetylglucosamine - metabolism
2022
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Structural basis for directional chitin biosynthesis
by
Chen, Wei
, Yu, Ailing
, Merzendorfer, Hans
, Wang, Dong
, Chen, Lei
, Liu, Yuansheng
, Yuchi, Zhiguang
, Gong, Yong
, Sundarraj, Rajamanikandan
, Yang, Qing
, Cao, Peng
in
101/28
/ 14/19
/ 14/34
/ 140/125
/ 140/146
/ 38/1
/ 38/109
/ 631/45/607/1172
/ 631/535/1258/1259
/ 82/16
/ 82/29
/ 82/58
/ 82/80
/ 82/83
/ Acetylglucosamine - metabolism
/ Aminoglycosides - pharmacology
/ Binding Sites
/ Biosynthesis
/ Cell Membrane - metabolism
/ Cell membranes
/ Cellulose
/ Chemical synthesis
/ Chitin
/ Chitin - biosynthesis
/ Chitin - chemistry
/ Chitin - metabolism
/ Chitin - ultrastructure
/ Chitin synthase
/ Chitin Synthase - metabolism
/ Cryoelectron Microscopy
/ Discharge
/ Electron microscopy
/ Elongation
/ Enzyme kinetics
/ Glycosyltransferase
/ Humanities and Social Sciences
/ Hyaluronic acid
/ Microscopy
/ multidisciplinary
/ N-Acetylglucosamine
/ Nikkomycin
/ Phytophthora - enzymology
/ Polymers
/ Root rot
/ Science
/ Science (multidisciplinary)
/ Soybeans
/ Spectrum analysis
/ Substrates
/ Uridine Diphosphate - metabolism
/ Uridine Diphosphate N-Acetylglucosamine - metabolism
2022
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Structural basis for directional chitin biosynthesis
by
Chen, Wei
, Yu, Ailing
, Merzendorfer, Hans
, Wang, Dong
, Chen, Lei
, Liu, Yuansheng
, Yuchi, Zhiguang
, Gong, Yong
, Sundarraj, Rajamanikandan
, Yang, Qing
, Cao, Peng
in
101/28
/ 14/19
/ 14/34
/ 140/125
/ 140/146
/ 38/1
/ 38/109
/ 631/45/607/1172
/ 631/535/1258/1259
/ 82/16
/ 82/29
/ 82/58
/ 82/80
/ 82/83
/ Acetylglucosamine - metabolism
/ Aminoglycosides - pharmacology
/ Binding Sites
/ Biosynthesis
/ Cell Membrane - metabolism
/ Cell membranes
/ Cellulose
/ Chemical synthesis
/ Chitin
/ Chitin - biosynthesis
/ Chitin - chemistry
/ Chitin - metabolism
/ Chitin - ultrastructure
/ Chitin synthase
/ Chitin Synthase - metabolism
/ Cryoelectron Microscopy
/ Discharge
/ Electron microscopy
/ Elongation
/ Enzyme kinetics
/ Glycosyltransferase
/ Humanities and Social Sciences
/ Hyaluronic acid
/ Microscopy
/ multidisciplinary
/ N-Acetylglucosamine
/ Nikkomycin
/ Phytophthora - enzymology
/ Polymers
/ Root rot
/ Science
/ Science (multidisciplinary)
/ Soybeans
/ Spectrum analysis
/ Substrates
/ Uridine Diphosphate - metabolism
/ Uridine Diphosphate N-Acetylglucosamine - metabolism
2022
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Journal Article
Structural basis for directional chitin biosynthesis
2022
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Overview
Chitin, the most abundant aminopolysaccharide in nature, is an extracellular polymer consisting of
N
-acetylglucosamine (GlcNAc) units
1
. The key reactions of chitin biosynthesis are catalysed by chitin synthase
2
–
4
, a membrane-integrated glycosyltransferase that transfers GlcNAc from UDP-GlcNAc to a growing chitin chain. However, the precise mechanism of this process has yet to be elucidated. Here we report five cryo-electron microscopy structures of a chitin synthase from the devastating soybean root rot pathogenic oomycete
Phytophthora sojae
(
Ps
Chs1). They represent the apo, GlcNAc-bound, nascent chitin oligomer-bound, UDP-bound (post-synthesis) and chitin synthase inhibitor nikkomycin Z-bound states of the enzyme, providing detailed views into the multiple steps of chitin biosynthesis and its competitive inhibition. The structures reveal the chitin synthesis reaction chamber that has the substrate-binding site, the catalytic centre and the entrance to the polymer-translocating channel that allows the product polymer to be discharged. This arrangement reflects consecutive key events in chitin biosynthesis from UDP-GlcNAc binding and polymer elongation to the release of the product. We identified a swinging loop within the chitin-translocating channel, which acts as a ‘gate lock’ that prevents the substrate from leaving while directing the product polymer into the translocating channel for discharge to the extracellular side of the cell membrane. This work reveals the directional multistep mechanism of chitin biosynthesis and provides a structural basis for inhibition of chitin synthesis.
Using cryo-electron microscopy, the directional multiple step mechanism of chitin biosynthesis is revealed.
Publisher
Nature Publishing Group UK,Nature Publishing Group
Subject
/ 14/19
/ 14/34
/ 140/125
/ 140/146
/ 38/1
/ 38/109
/ 82/16
/ 82/29
/ 82/58
/ 82/80
/ 82/83
/ Acetylglucosamine - metabolism
/ Aminoglycosides - pharmacology
/ Chitin
/ Chitin Synthase - metabolism
/ Humanities and Social Sciences
/ Polymers
/ Root rot
/ Science
/ Soybeans
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