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ADAMTS-13 聚糖和构象依赖性活性。

ADAMTS-13 glycans and conformation-dependent activity.

机构信息

Department of Haematology, Faculty of Medicine, Hammersmith Hospital Campus, Imperial College London, London, UK.

Laboratory for Thrombosis Research, Catholic University Leuven, Leuven, Belgium.

出版信息

J Thromb Haemost. 2017 Jun;15(6):1155-1166. doi: 10.1111/jth.13688. Epub 2017 Apr 27.

Abstract

UNLABELLED

Essentials The impact of N-linked glycosylation on ADAMTS-13 function has not been fully explored. The activity of glycan modified ADAMTS-13 was investigated under static and shear stress conditions. Terminal sialic acid on the metalloprotease domain glycans are important for ADAMTS-13 activity. The CUB domain glycans modulate ADAMTS-13 activity.

SUMMARY

Background ADAMTS-13 activity can be regulated by its conformation, whereby interactions between the C-terminal CUB domains and the spacer domain maintain ADAMTS-13 in a closed conformation. ADAMTS-13 contains 10 N-linked glycans, with four sites present in theTSP2 through to CUB domains that may contribute to its conformation. Objectives/Methods We hypothesized that glycosylation contributes to ADAMTS-13 conformation and function. The proteolytic activity of glycan-modified ADAMTS-13 was assessed under static and shear stress conditions. Results Enzymatic removal of terminal silaic acid or entire N-linked glycan chains decreased activity against FRETS-VWF73 at pH 7.4 and against full-length von Willebrand factor (VWF) under shear stress. Using truncated ADAMTS-13, we demonstrated that this was attributable to loss of sialic acid from the glycans in the metalloprotease domain and an effect of N-linked glycosylation in the TSP2 through to CUB domains. Mutation of the N-linked glycan sites in the MDTCS domains reduced or abolished protein expression. However, the N707Q, N828Q, N1235Q and N1354Q (TSP2, TSP4, CUB1, and CUB2 domains, respectively) variants were expressed normally. Interestingly, the N707Q and N828Q variants showed reduced activity against FRETS-VWF73, but normal activity under flow conditions. In contrast, the N1235Q and N1354Q variants had enhanced activity against FRETS-VWF73 and VWF under shear stress. Immunoprecipitation experiments confirmed that loss of N-linked glycans in the CUB domains significantly reduced the interaction with the spacer domain and enhanced binding to the 6A6 anti-ADAMTS-13 antibody, which recognizes a cryptic epitope in the metalloprotease domain. Conclusions Together, these data demonstrate that the N-linked glycans of ADAMTS-13 play a crucial role in regulating ADAMTS-13 activity.

摘要

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要点 聚糖对 ADAMTS-13 功能的影响尚未完全阐明。研究了在静态和切变应力条件下糖基化 ADAMTS-13 的活性。金属蛋白酶结构域聚糖末端的唾液酸对 ADAMTS-13 的活性很重要。CUB 结构域聚糖调节 ADAMTS-13 的活性。

摘要

背景 ADAMTS-13 的活性可以通过其构象来调节,其中 C 末端 CUB 结构域与间隔区之间的相互作用使 ADAMTS-13 保持在封闭构象中。ADAMTS-13 包含 10 个 N 连接聚糖,其中 4 个位于 TSP2 到 CUB 结构域,这些聚糖可能有助于其构象。目的/方法我们假设聚糖有助于 ADAMTS-13 的构象和功能。在静态和切变应力条件下,评估糖基化 ADAMTS-13 的酶切活性。结果酶切去除末端唾液酸或整个 N 连接聚糖链会降低 pH7.4 时对 FRETS-VWF73 的活性以及切变应力下对全长 von Willebrand 因子(VWF)的活性。使用截断的 ADAMTS-13,我们证明这归因于金属蛋白酶结构域中聚糖的唾液酸丢失以及 TSP2 到 CUB 结构域中的 N 连接聚糖的影响。MDTCS 结构域中 N 连接糖基化位点的突变降低或消除了蛋白表达。然而,N707Q、N828Q、N1235Q 和 N1354Q(分别为 TSP2、TSP4、CUB1 和 CUB2 结构域)变体正常表达。有趣的是,N707Q 和 N828Q 变体对 FRETS-VWF73 的活性降低,但在流动条件下的活性正常。相比之下,N1235Q 和 N1354Q 变体对 FRETS-VWF73 和 VWF 在切变应力下的活性增强。免疫沉淀实验证实,CUB 结构域中 N 连接聚糖的丢失显著降低了与间隔区的相互作用,并增强了与 6A6 抗 ADAMTS-13 抗体的结合,该抗体识别金属蛋白酶结构域中的隐蔽表位。结论 综上所述,这些数据表明 ADAMTS-13 的 N 连接聚糖在调节 ADAMTS-13 的活性中起着至关重要的作用。

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