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乙酰肝素硫酸酶-N-脱乙酰基-N-磺基转移酶-1 结构域的抑制肽。

Inhibitory peptides of the sulfotransferase domain of the heparan sulfate enzyme, N-deacetylase-N-sulfotransferase-1.

机构信息

Departamentos de Bioquímica, Universidade Federal de Sa˜o Paulo, 04044-020 Sa˜o Paulo, Brazil.

出版信息

J Biol Chem. 2011 Feb 18;286(7):5338-46. doi: 10.1074/jbc.M110.100719. Epub 2010 Feb 2.

Abstract

N-Deacetylase-N-sulfotransferase 1 (Ndst1) catalyzes the initial modification of heparan sulfate and heparin during their biosynthesis by removal of acetyl groups from subsets of N-acetylglucosamine units and subsequent sulfation of the resulting free amino groups. In this study, we used a phage display library to select peptides that interact with Ndst1, with the aim of finding inhibitors of the enzyme. The phage library consisted of cyclic random 10-mer peptides expressed in the phage capsid protein pIII. Selection was based on the ability of engineered phage to bind to recombinant murine Ndst1 (mNdst1) and displacement with heparin. Peptides that were enriched through multiple cycles of binding and disassociation displayed two specific sequences, CRGWRGEKIGNC and CNMQALSMPVTC. Both peptides inhibited mNdst1 activity in vitro, however, by distinct mechanisms. The peptide CRGWRGEKIGNC presents a chemokine-like repeat motif (BXX, where B represents a basic amino acid and X is a noncharged amino acid) and binds to heparan sulfate, thus blocking the binding of substrate to the enzyme. The peptide NMQALSMPVT inhibits mNdst1 activity by direct interaction with the enzyme near the active site. The discovery of inhibitory peptides in this way suggests a method for developing peptide inhibitors of heparan sulfate biosynthesis.

摘要

N-去乙酰基-N-磺基转移酶 1(Ndst1)在其生物合成过程中催化肝素硫酸和肝素的初始修饰,方法是从 N-乙酰葡萄糖胺单元的亚组中去除乙酰基基团,然后对生成的游离氨基进行磺化。在这项研究中,我们使用噬菌体展示文库来筛选与 Ndst1 相互作用的肽,目的是找到该酶的抑制剂。噬菌体文库由在噬菌体衣壳蛋白 pIII 中表达的环状随机 10 肽组成。选择基于工程噬菌体与重组鼠 Ndst1(mNdst1)结合的能力和肝素的置换。通过多个结合和解离循环富集的肽显示出两个特定的序列,CRGWRGEKIGNC 和 CNMQALSMPVTC。两种肽都在体外抑制 mNdst1 活性,但机制不同。肽 CRGWRGEKIGNC 呈现趋化因子样重复基序(BXX,其中 B 代表碱性氨基酸,X 代表非带电氨基酸)并与肝素硫酸结合,从而阻止底物与酶的结合。肽 NMQALSMPVT 通过与酶在活性位点附近的直接相互作用抑制 mNdst1 活性。以这种方式发现抑制肽提示了一种开发肝素硫酸生物合成肽抑制剂的方法。

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