ASK1-K716R reduces neuroinflammation and white matter injury via preserving blood-brain barrier integrity after traumatic brain injury

被引:12
|
作者
Meng, Shan [1 ,2 ]
Cao, Hui [1 ,2 ]
Huang, Yichen [1 ,2 ]
Shi, Ziyu [1 ,2 ]
Li, Jiaying [1 ,2 ]
Wang, Yana [1 ,2 ]
Zhang, Yue [1 ,2 ]
Chen, Shuning [1 ,2 ]
Shi, Hong [3 ]
Gao, Yanqin [1 ,2 ]
机构
[1] Fudan Univ, MOE Frontiers Ctr Brain Sci, State Key Lab Med Neurobiol, Shanghai 200032, Peoples R China
[2] Fudan Univ, Inst Brain Sci, Shanghai 200032, Peoples R China
[3] Tongji Univ, Shanghai Pulm Hosp, Sch Med, Dept Anesthesiol, Shanghai 200433, Peoples R China
关键词
ASK1; JNK/p38; Blood-brain barrier integrity; Cerebral microvessel; Neurobehaviors; SIGNAL-REGULATING KINASE; PROTEIN-KINASE; ASK1; INHIBITION; APOPTOSIS; ACTIVATION; PHOSPHORYLATION; METHYLATION; DISRUPTION; PATHWAY;
D O I
10.1186/s12974-023-02923-6
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
BackgroundTraumatic brain injury (TBI) is a significant worldwide public health concern that necessitates attention. Apoptosis signal-regulating kinase 1 (ASK1), a key player in various central nervous system (CNS) diseases, has garnered interest for its potential neuroprotective effects against ischemic stroke and epilepsy when deleted. Nonetheless, the specific impact of ASK1 on TBI and its underlying mechanisms remain elusive. Notably, mutation of ATP-binding sites, such as lysine residues, can lead to catalytic inactivation of ASK1. To address these knowledge gaps, we generated transgenic mice harboring a site-specific mutant ASK1 Map3k5-e (K716R), enabling us to assess its effects and elucidate potential underlying mechanisms following TBI.MethodsWe employed the CRIPR/Cas9 system to generate a transgenic mouse model carrying the ASK1-K716R mutation, aming to investigate the functional implications of this specific mutant. The controlled cortical impact method was utilized to induce TBI. Expression and distribution of ASK1 were detected through Western blotting and immunofluorescence staining, respectively. The ASK1 kinase activity after TBI was detected by a specific ASK1 kinase activity kit. Cerebral microvessels were isolated by gradient centrifugation using dextran. Immunofluorescence staining was performed to evaluate blood-brain barrier (BBB) damage. BBB ultrastructure was visualized using transmission electron microscopy, while the expression levels of endothelial tight junction proteins and ASK1 signaling pathway proteins was detected by Western blotting. To investigate TBI-induced neuroinflammation, we conducted immunofluorescence staining, quantitative real-time polymerase chain reaction (qRT-PCR) and flow cytometry analyses. Additionally, immunofluorescence staining and electrophysiological compound action potentials were conducted to evaluate gray and white matter injury. Finally, sensorimotor function and cognitive function were assessed by a battery of behavioral tests.ResultsThe activity of ASK1-K716R was significantly decreased following TBI. Western blotting confirmed that ASK1-K716R effectively inhibited the phosphorylation of ASK1, JNKs, and p38 in response to TBI. Additionally, ASK1-K716R demonstrated a protective function in maintaining BBB integrity by suppressing ASK1/JNKs activity in endothelial cells, thereby reducing the degradation of tight junction proteins following TBI. Besides, ASK1-K716R effectively suppressed the infiltration of peripheral immune cells into the brain parenchyma, decreased the number of proinflammatory-like microglia/macrophages, increased the number of anti-inflammatory-like microglia/macrophages, and downregulated expression of several proinflammatory factors. Furthermore, ASK1-K716R attenuated white matter injury and improved the nerve conduction function of both myelinated and unmyelinated fibers after TBI. Finally, our findings demonstrated that ASK1-K716R exhibited favorable long-term functional and histological outcomes in the aftermath of TBI.ConclusionASK1-K716R preserves BBB integrity by inhibiting ASK1/JNKs pathway in endothelial cells, consequently reducing the degradation of tight junction proteins. Additionally, it alleviates early neuroinflammation by inhibiting the infiltration of peripheral immune cells into the brain parenchyma and modulating the polarization of microglia/macrophages. These beneficial effects of ASK1-K716R subsequently result in a reduction in white matter injury and promote the long-term recovery of neurological function following TBI. This study highlights the critical role of ASK1-K716's site in regulating ASK1 activity during TBI.ASK1-K716R enhances BBB integrity by inhibiting ASK1/JNKs activity in endothelial cells, thereby reducing the degradation of tight junction proteins following TBI.ASK1-K716R suppresses the infiltration of peripheral immune cells and attenuates microglia-mediated neuroinflammation following TBI.ASK1-K716R mitigates white matter injury and facilitates the long-term recovery of neurological function following TBI.
引用
收藏
页数:22
相关论文
共 50 条
  • [41] Blood-brain barrier breakdown as a therapeutic target in traumatic brain injury
    Shlosberg, Dan
    Benifla, Mony
    Kaufer, Daniela
    Friedman, Alon
    NATURE REVIEWS NEUROLOGY, 2010, 6 (07) : 393 - 403
  • [42] Neuroinflammation, white matter injury, cognitive and emotional deficits after traumatic brain injury in the adult mice
    Taib, T.
    Leconte, C.
    van Steenwinckel, J.
    Cho, A.
    Palmier, B.
    Torsello, E.
    Benedetto, C.
    Simon, K.
    Lai-Kuen, R.
    Gressens, P.
    Marchand-Leroux, C.
    Besson, V.
    GLIA, 2017, 65 : E372 - E372
  • [43] Cystatin C improves blood-brain barrier integrity after ischemic brain injury in mice
    Yang, Bo
    Xu, Junjie
    Chang, Liuhui
    Miao, Zhigang
    Heang, Dara
    Pu, Yuwei
    Zhou, Xun
    Zhang, Lingwei
    Xie, Hong
    JOURNAL OF NEUROCHEMISTRY, 2020, 153 (03) : 413 - 425
  • [44] Neuroprotective effects of citicoline on brain edema and blood-brain barrier breakdown after traumatic brain injury
    Baskaya, MK
    Dogan, A
    Rao, AM
    Dempsey, RJ
    JOURNAL OF NEUROSURGERY, 2000, 92 (03) : 448 - 452
  • [45] Xuefu Zhuyu Decoction Improves Blood-Brain Barrier Integrity in Acute Traumatic Brain Injury Rats via Regulating Adenosine
    Wang, Yang
    Yan, Qiu-ju
    Hu, En
    Wu, Yao
    Ding, Ruo-qi
    Chen, Quan
    Cheng, Meng-han
    Yang, Xi-ya
    Tang, Tao
    Li, Teng
    CHINESE JOURNAL OF INTEGRATIVE MEDICINE, 2025,
  • [46] Morphine attenuates neuroinflammation and blood-brain barrier disruption following traumatic brain injury through the opioidergic system
    Rahimi, Siavash
    Dadfar, Behzad
    Tavakolian, Golvash
    Rad, Arya Asadi
    Shabkahi, Ali Rashid
    Siahposht-Khachaki, Ali
    BRAIN RESEARCH BULLETIN, 2021, 176 : 103 - 111
  • [47] Caffeic Acid Phenethyl Ester Protects Blood-Brain Barrier Integrity and Reduces Contusion Volume in Rodent Models of Traumatic Brain Injury
    Zhao, Jing
    Pati, Shibani
    Redell, John B.
    Zhang, Min
    Moore, Anthony N.
    Dash, Pramod K.
    JOURNAL OF NEUROTRAUMA, 2012, 29 (06) : 1209 - 1218
  • [48] Abietic acid ameliorates neuroinflammation and blood-brain barrier disruption in traumatic brain injury by inhibiting MAPK pathway
    Xing, Kongxue
    Jiang, Wenrong
    TROPICAL JOURNAL OF PHARMACEUTICAL RESEARCH, 2022, 21 (09) : 1893 - 1897
  • [49] JNK signaling is the shared pathway linking neuroinflammation, blood-brain barrier disruption, and oligodendroglial apoptosis in the white matter injury of the immature brain
    Wang, Lan-Wan
    Tu, Yi-Fang
    Huang, Chao-Ching
    Ho, Chien-Jung
    JOURNAL OF NEUROINFLAMMATION, 2012, 9
  • [50] Glibenclamide Attenuates Blood-Brain Barrier Disruption in Adult Mice after Traumatic Brain Injury
    Xu, Zhi-ming
    Yuan, Fang
    Liu, Ying-liang
    Ding, Jun
    Tian, Heng-li
    JOURNAL OF NEUROTRAUMA, 2017, 34 (04) : 925 - 933