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截短的YY1通过YY1中的339KLK341基序与BASP1相互作用,并抑制血管损伤后血管平滑肌细胞的生长和内膜增生。

Truncated YY1 interacts with BASP1 through a 339KLK341 motif in YY1 and suppresses vascular smooth muscle cell growth and intimal hyperplasia after vascular injury.

作者信息

Santiago Fernando S, Li Yue, Zhong Ling, Raftery Mark J, Lins Laurence, Khachigian Levon M

机构信息

Vascular Biology and Translational Research Laboratory, School of Medical Sciences, UNSW Medicine, University of New South Wales, Sydney, NSW 2052, Australia.

Bioanalytical Mass Spectrometry Facility, Mark Wainwright Analytical Centre, University of New South Wales, Sydney, NSW 2052, Australia.

出版信息

Cardiovasc Res. 2021 Sep 28;117(11):2395-2406. doi: 10.1093/cvr/cvab021.

Abstract

AIMS

In-stent restenosis and late stent thrombosis are complications associated with the use of metallic and drug-coated stents. Strategies that inhibit vascular smooth muscle cell (SMC) proliferation without affecting endothelial cell (EC) growth would be helpful in reducing complications arising from percutaneous interventions. SMC hyperplasia is also a pathologic feature of graft stenosis and fistula failure. Our group previously showed that forced expression of the injury-inducible zinc finger (ZNF) transcription factor, yin yang-1 (YY1), comprising 414 residues inhibits neointima formation in carotid arteries of rabbits and rats. YY1 inhibits SMC proliferation without affecting EC growth in vitro. Identifying a shorter version of YY1 retaining cell-selective inhibition would make it more amenable for potential use as a gene therapeutic agent.

METHODS AND RESULTS

We dissected YY1 into a range of shorter fragments (YY1A-D, YY1Δ) and found that the first two ZNFs in YY1 (construct YY1B, spanning 52 residues) repressed SMC proliferation. Receptor binding domain analysis predicts a three-residue (339KLK341) interaction domain. Mutation of 339KLK341 to 339AAA341 in YY1B (called YY1Bm) abrogated YY1B's ability to inhibit SMC but not EC proliferation and migration. Incubation of recombinant GST-YY1B and GST-YY1Bm with SMC lysates followed by precipitation with glutathione-agarose beads and mass spectrometric analysis identified a novel interaction between YY1B and BASP1. Overexpression of BASP1, like YY1, inhibited SMC but not EC proliferation and migration. BASP1 siRNA partially rescued SMC from growth inhibition by YY1B. In the rat carotid balloon injury model, adenoviral overexpression of YY1B, like full-length YY1, reduced neointima formation, whereas YY1Bm had no such effect. CD31+ immunostaining suggested YY1B could increase re-endothelialization in a 339KLK341-dependent manner.

CONCLUSION

These studies identify a truncated form of YY1 (YY1B) that can interact with BASP1 and inhibit SMC proliferation, migration, and intimal hyperplasia after balloon injury of rat carotid arteries as effectively as full length YY1. We demonstrate the therapeutic potential of YY1B in vascular proliferative disease.

摘要

目的

支架内再狭窄和晚期支架血栓形成是与金属支架和药物涂层支架使用相关的并发症。在不影响内皮细胞(EC)生长的情况下抑制血管平滑肌细胞(SMC)增殖的策略,将有助于减少经皮介入治疗引起的并发症。SMC增生也是移植物狭窄和瘘管功能衰竭的病理特征。我们的研究小组之前表明,由414个残基组成的损伤诱导型锌指(ZNF)转录因子阴阳-1(YY1)的强制表达可抑制兔和大鼠颈动脉的新生内膜形成。YY1在体外抑制SMC增殖而不影响EC生长。鉴定出一种保留细胞选择性抑制作用的较短版本的YY1,将使其更适合作为潜在的基因治疗药物。

方法和结果

我们将YY1切割成一系列较短的片段(YY1A-D、YY1Δ),发现YY1中的前两个ZNF(构建体YY1B,跨度为52个残基)可抑制SMC增殖。受体结合域分析预测了一个三残基(339KLK341)相互作用域。将YY1B中的339KLK341突变为339AAA341(称为YY1Bm)消除了YY1B抑制SMC但不抑制EC增殖和迁移的能力。用重组GST-YY1B和GST-YY1Bm与SMC裂解物孵育,然后用谷胱甘肽琼脂糖珠沉淀并进行质谱分析,确定了YY1B与BASP1之间的新型相互作用。与YY1一样,BASP1的过表达抑制SMC但不抑制EC增殖和迁移。BASP1 siRNA部分挽救了SMC免受YY1B的生长抑制。在大鼠颈动脉球囊损伤模型中,YY1B的腺病毒过表达与全长YY1一样,减少了新生内膜形成,而YY1Bm则没有这种作用。CD31+免疫染色表明YY1B可以以339KLK341依赖的方式增加再内皮化。

结论

这些研究鉴定出一种截短形式的YY1(YY1B),它可以与BASP1相互作用,并像全长YY1一样有效地抑制大鼠颈动脉球囊损伤后的SMC增殖、迁移和内膜增生。我们证明了YY1B在血管增殖性疾病中的治疗潜力。

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