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本文引用的文献

1
Mutation of Hairy-and-Enhancer-of-Split-7 in humans causes spondylocostal dysostosis.人类中Hairy-and-Enhancer-of-Split-7基因的突变会导致脊椎肋骨发育不良。
Hum Mol Genet. 2008 Dec 1;17(23):3761-6. doi: 10.1093/hmg/ddn272. Epub 2008 Sep 5.
2
O-fucosylation of muscle agrin determines its ability to cluster acetylcholine receptors.肌肉集聚蛋白的O-岩藻糖基化决定其聚集乙酰胆碱受体的能力。
Mol Cell Neurosci. 2008 Nov;39(3):452-64. doi: 10.1016/j.mcn.2008.07.026. Epub 2008 Aug 15.
3
The diversity of O-linked glycans expressed during Drosophila melanogaster development reflects stage- and tissue-specific requirements for cell signaling.在黑腹果蝇发育过程中表达的O-连接聚糖的多样性反映了细胞信号传导的阶段和组织特异性需求。
J Biol Chem. 2008 Oct 31;283(44):30385-400. doi: 10.1074/jbc.M804925200. Epub 2008 Aug 25.
4
Lunatic fringe protein processing by proprotein convertases may contribute to the short protein half-life in the segmentation clock.前蛋白转化酶对边缘蛋白的加工可能导致其在体节发生时钟中的短半衰期。
Biochim Biophys Acta. 2008 Dec;1783(12):2384-90. doi: 10.1016/j.bbamcr.2008.07.009. Epub 2008 Jul 25.
5
A conserved face of the Jagged/Serrate DSL domain is involved in Notch trans-activation and cis-inhibition.锯齿状/锯齿状 DSL 结构域的一个保守面参与 Notch 反式激活和顺式抑制。
Nat Struct Mol Biol. 2008 Aug;15(8):849-57. doi: 10.1038/nsmb.1457. Epub 2008 Jul 27.
6
Pofut1 is required for the proper localization of the Notch receptor during mouse development.在小鼠发育过程中,Notch受体的正确定位需要Pofut1。
Mech Dev. 2008 Aug;125(8):663-73. doi: 10.1016/j.mod.2008.04.007. Epub 2008 May 4.
7
In vivo consequences of deleting EGF repeats 8-12 including the ligand binding domain of mouse Notch1.删除包含小鼠Notch1配体结合结构域的表皮生长因子重复序列8-12在体内的后果。
BMC Dev Biol. 2008 Apr 29;8:48. doi: 10.1186/1471-213X-8-48.
8
Roles of Pofut1 and O-fucose in mammalian Notch signaling.Pofut1和O-岩藻糖在哺乳动物Notch信号传导中的作用。
J Biol Chem. 2008 May 16;283(20):13638-51. doi: 10.1074/jbc.M802027200. Epub 2008 Mar 17.
9
Functions of O-fucosyltransferase in Notch trafficking and signaling: towards the end of a controversy?O-岩藻糖基转移酶在Notch转运和信号传导中的作用:争议即将结束?
J Biol. 2008;7(2):7. doi: 10.1186/jbiol68.
10
Localization of the delta-like-1-binding site in human Notch-1 and its modulation by calcium affinity.人类Notch-1中Delta样-1结合位点的定位及其钙亲和力调节
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异常O-聚糖在细胞间信号传导中的作用。

Role of unusual O-glycans in intercellular signaling.

作者信息

Luther Kelvin B, Haltiwanger Robert S

机构信息

Department of Biochemistry and Cell Biology, Institute for Cell and Developmental Biology, Stony Brook University, Stony Brook, NY 11794-5215, USA.

出版信息

Int J Biochem Cell Biol. 2009 May;41(5):1011-24. doi: 10.1016/j.biocel.2008.10.001. Epub 2008 Oct 8.

DOI:10.1016/j.biocel.2008.10.001
PMID:18952191
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2714165/
Abstract

In the last two decades, our knowledge of the role of glycans in development and signal transduction has expanded enormously. While most work has focused on the importance of N-linked or mucin-type O-linked glycosylation, recent work has highlighted the importance of several more unusual forms of glycosylation that are the focus of this review. In particular, the ability of O-fucose glycans on the epidermal growth factor-like (EGF) repeats of Notch to modulate signaling places glycosylation alongside phosphorylation as a means to modulate protein-protein interactions and their resultant downstream signals. The recent discovery that O-glucose modification of Notch EGF repeats is also required for Notch function has further expanded the range of glycosylation events capable of modulating Notch signaling. The prominent role of Notch during development and in later cell-fate decisions underscores the importance of these modifications in human biology. The role of glycans in intercellular signaling events is only beginning to be understood and appears ready to expand into new areas with the discovery that thrombospondin type 1 repeats are also modified with O-fucose glycans. Finally, a rare form of glycosylation called C-mannosylation modifies tryptophans in some signaling competent molecules and may be a further layer of complexity in the field. We will review each of these areas focusing on the glycan structures produced, the consequence of their presence, and the enzymes responsible.

摘要

在过去二十年中,我们对聚糖在发育和信号转导中的作用的认识有了极大的扩展。虽然大多数研究都集中在N-连接或粘蛋白型O-连接糖基化的重要性上,但最近的研究突出了几种更为特殊的糖基化形式的重要性,而这些正是本综述的重点。特别是,Notch的表皮生长因子样(EGF)重复序列上的O-岩藻糖聚糖调节信号传导的能力,使糖基化与磷酸化一样,成为调节蛋白质-蛋白质相互作用及其下游信号的一种方式。最近发现Notch EGF重复序列的O-葡萄糖修饰对于Notch功能也是必需的,这进一步扩大了能够调节Notch信号传导的糖基化事件的范围。Notch在发育过程以及后续细胞命运决定中的突出作用,突显了这些修饰在人类生物学中的重要性。聚糖在细胞间信号传导事件中的作用才刚刚开始被理解,并且随着发现血小板反应蛋白1型重复序列也被O-岩藻糖聚糖修饰,似乎准备好拓展到新的领域。最后,一种名为C-甘露糖基化的罕见糖基化形式修饰了一些具有信号传导能力的分子中的色氨酸,这可能是该领域更为复杂的一个层面。我们将综述这些领域中的每一个,重点关注所产生的聚糖结构、其存在的后果以及相关的酶。