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Negative Regulation of Notch Signaling by Xylose
被引:75
|作者:
Lee, Tom V.
[1
]
Sethi, Maya K.
[2
]
Leonardi, Jessica
[1
,3
]
Rana, Nadia A.
[4
]
Buettner, Falk F. R.
[3
]
Haltiwanger, Robert S.
[4
]
Bakker, Hans
[3
]
Jafar-Nejad, Hamed
[1
,3
]
机构:
[1] Baylor Coll Med, Dept Mol & Human Genet, Houston, TX 77030 USA
[2] Hannover Med Sch, Dept Cellular Chem, Hannover, Germany
[3] Baylor Coll Med, Program Dev Biol, Houston, TX 77030 USA
[4] SUNY Stony Brook, Dept Biochem & Cell Biol, Stony Brook, NY 11794 USA
来源:
关键词:
PROTEIN O-GLUCOSYLTRANSFERASE;
GROWTH-FACTOR REPEATS;
DROSOPHILA-MELANOGASTER;
DELTA INTERACTIONS;
MAMMALIAN NOTCH;
MODIFIES NOTCH;
LINKED FUCOSE;
GLYCOSYLTRANSFERASE;
DOMAIN;
MUTATION;
D O I:
10.1371/journal.pgen.1003547
中图分类号:
Q3 [遗传学];
学科分类号:
071007 ;
090102 ;
摘要:
The Notch signaling pathway controls a large number of processes during animal development and adult homeostasis. One of the conserved post-translational modifications of the Notch receptors is the addition of an O-linked glucose to epidermal growth factor-like (EGF) repeats with a C-X-S-X-(P/A)-C motif by Protein O-glucosyltransferase 1 (POGLUT1; Rumi in Drosophila). Genetic experiments in flies and mice, and in vivo structure-function analysis in flies indicate that O-glucose residues promote Notch signaling. The O-glucose residues on mammalian Notch1 and Notch2 proteins are efficiently extended by the addition of one or two xylose residues through the function of specific mammalian xylosyltransferases. However, the contribution of xylosylation to Notch signaling is not known. Here, we identify the Drosophila enzyme Shams responsible for the addition of xylose to O-glucose on EGF repeats. Surprisingly, loss-and gain-of-function experiments strongly suggest that xylose negatively regulates Notch signaling, opposite to the role played by glucose residues. Mass spectrometric analysis of Drosophila Notch indicates that addition of xylose to O-glucosylated Notch EGF repeats is limited to EGF14-20. A Notch transgene with mutations in the O-glucosylation sites of Notch EGF16-20 recapitulates the shams loss-of-function phenotypes, and suppresses the phenotypes caused by the overexpression of human xylosyltransferases. Antibody staining in animals with decreased Notch xylosylation indicates that xylose residues on EGF16-20 negatively regulate the surface expression of the Notch receptor. Our studies uncover a specific role for xylose in the regulation of the Drosophila Notch signaling, and suggest a previously unrecognized regulatory role for EGF16-20 of Notch.
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页数:11
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