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Essential dextrin structure as donor substrate for 4-α-glucanotransferase in glycogen debranching enzyme

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논문

Essential dextrin structure as donor substrate for 4-α-glucanotransferase in glycogen debranching enzyme

학술지

The Journal of biochemistry

저자명

Uno, Rentaro; Makino, Yasushi; Matsubara, Hiroshi

초록

<P><B>Abstract</B><P>Glycogen debranching enzyme is a single polypeptide with distinct catalytic sites for 4-&alpha;-glucanotransferase and amylo-&alpha;-1,6-glucosidase. To allow phosphorylase to degrade the inner tiers of highly branched glycogen, 4-&alpha;-glucanotransferase converts the phosphorylase-limit biantennary branch G-G-G-G-(G-G-G-G↔)G-G- (G: d-glucose, hyphens: &alpha;-1,4-linkages; double-headed arrow: &alpha;-1,6-linkage) into the G-G-G-G-(G↔)G-G- residue, which is then subjected to amylo-&alpha;-1,6-glucosidase to release the remaining G↔ residue. However, while the essential side-chain structure of the 4-&alpha;-glucanotransferase donor substrate has been determined to be the G-G-G-G↔ residue (Watanabe, Y., et al. (2008) J. Biochem.143, 435-440), its essential main-chain structure remains to be investigated. In this study, we probed the 4-&alpha;-glucanotransferase donor-binding region using novel fluorogenic dextrins Gm-(G4↔)G-Gn-F (F: 1-deoxy-1-[(2-pyridyl)amino]-d-glucitol) and maltohexaose (G6) as the donor and acceptor substrates, respectively. 4-&alpha;-Glucanotransferase exhibited maximum activity towards G4-(G4↔)G-F and G4-(G4↔)G-G-F, indicating that recognition of the G4-(G4↔)G-moiety was essential for full enzyme function. Notably, when the 4-&alpha;-glucanotransferase activity towards G4-(G4↔)G-G-F was taken as unity, those towards nonbranching dextrins were < 0.001. This indicated that the disproportionation activities towards maltooligosaccharides (Gm) are abnormal behaviours of 4-&alpha;-glucanotransferase. Notably, however, these activities have been traditionally measured to identify the 4-&alpha;-glucanotransferase mutations causing glycogen storage disease type III. This study provides a basis for more accurate identification.</P></P>

발행연도

2024

발행기관

Oxford University Press

ISSN

0021-924x

ISSN

1756-2651

176

2

페이지

pp.109-117

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1 2023-12-11

논문; 2024-03-18

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