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内切糖苷酶HPSE对DNA损伤传感的解离作用

Dissociation of DNA damage sensing by endoglycosidase HPSE.

作者信息

Agelidis Alex, Suryawanshi Rahul K, Patil Chandrashekhar D, Campeau Anaamika, Gonzalez David J, Shukla Deepak

机构信息

Department of Microbiology and Immunology, University of Illinois at Chicago, Chicago, IL 60612, USA.

Department of Ophthalmology and Visual Sciences, University of Illinois at Chicago, Chicago, IL 60612, USA.

出版信息

iScience. 2021 Feb 27;24(3):102242. doi: 10.1016/j.isci.2021.102242. eCollection 2021 Mar 19.

Abstract

Balance between cell proliferation and elimination is critical in handling threats both exogenous and of internal dysfunction. Recent work has implicated a conserved but poorly understood endoglycosidase heparanase (HPSE) in the restriction of innate defense responses, yet biochemical mediators of these key functions remained unclear. Here, an unbiased immunopurification proteomics strategy is employed to identify and rank uncharacterized interactions between HPSE and mediators of canonical signaling pathways linking cell cycle and stress responses. We demonstrate with models of genotoxic stress including herpes simplex virus infection and chemotherapeutic treatment that HPSE dampens innate responses to double-stranded DNA breakage by interfering with signal transduction between initial sensors and downstream mediators. Given the long-standing recognition of HPSE in driving late-stage inflammatory disease exemplified by tissue destruction and cancer metastasis, modulation of this protein with control over the DNA damage response imparts a unique strategy in the development of unconventional multivalent therapy.

摘要

细胞增殖与清除之间的平衡对于应对外源性和内部功能障碍的威胁至关重要。最近的研究表明,一种保守但了解甚少的内切糖苷酶乙酰肝素酶(HPSE)参与了先天性防御反应的限制,然而这些关键功能的生化介质仍不清楚。在这里,我们采用一种无偏倚的免疫纯化蛋白质组学策略,来识别和排列HPSE与连接细胞周期和应激反应的经典信号通路介质之间未被表征的相互作用。我们用包括单纯疱疹病毒感染和化疗治疗在内的基因毒性应激模型证明,HPSE通过干扰初始传感器和下游介质之间的信号转导,抑制对双链DNA断裂的先天性反应。鉴于长期以来人们认识到HPSE在驱动以组织破坏和癌症转移为代表的晚期炎症性疾病中的作用,通过控制DNA损伤反应来调节这种蛋白质,为开发非常规多价疗法提供了一种独特的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/534f/7957091/4af9bae820ba/fx1.jpg

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