Targeted disruption of dual leucine zipper kinase and leucine zipper kinase promotes neuronal survival in a model of diffuse traumatic brain injury

Author:

Welsbie Derek S.ORCID,Ziogas Nikolaos K.,Xu Leyan,Kim Byung-Jin,Ge Yusong,Patel Amit K.,Ryu Jiwon,Lehar Mohamed,Alexandris Athanasios S.,Stewart Nicholas,Zack Donald J.,Koliatsos Vassilis E.

Abstract

Abstract Background Traumatic brain injury (TBI) is a major cause of CNS neurodegeneration and has no disease-altering therapies. It is commonly associated with a specific type of biomechanical disruption of the axon called traumatic axonal injury (TAI), which often leads to axonal and sometimes perikaryal degeneration of CNS neurons. We have previously used genome-scale, arrayed RNA interference-based screens in primary mouse retinal ganglion cells (RGCs) to identify a pair of related kinases, dual leucine zipper kinase (DLK) and leucine zipper kinase (LZK) that are key mediators of cell death in response to simple axotomy. Moreover, we showed that DLK and LZK are the major upstream triggers for JUN N-terminal kinase (JNK) signaling following total axonal transection. However, the degree to which DLK/LZK are involved in TAI/TBI is unknown. Methods Here we used the impact acceleration (IA) model of diffuse TBI, which produces TAI in the visual system, and complementary genetic and pharmacologic approaches to disrupt DLK and LZK, and explored whether DLK and LZK play a role in RGC perikaryal and axonal degeneration in response to TAI. Results Our findings show that the IA model activates DLK/JNK/JUN signaling but, in contrast to axotomy, many RGCs are able to recover from the injury and terminate the activation of the pathway. Moreover, while DLK disruption is sufficient to suppress JUN phosphorylation, combined DLK and LZK inhibition is required to prevent RGC cell death. Finally, we show that the FDA-approved protein kinase inhibitor, sunitinib, which has activity against DLK and LZK, is able to produce similar increases in RGC survival. Conclusion The mitogen-activated kinase kinase kinases (MAP3Ks), DLK and LZK, participate in cell death signaling of CNS neurons in response to TBI. Moreover, sustained pharmacologic inhibition of DLK is neuroprotective, an effect creating an opportunity to potentially translate these findings to patients with TBI.

Funder

National Eye Institute

E. Matilda Ziegler Foundation for the Blind

Research to Prevent Blindness

U.S. Department of Defense

BrightFocus Foundation

Maryland state TEDCO grant

Sidran Family Foundation

Spyros N. Lemos Memorial Fund

Guerrieri Family Foundation

Publisher

Springer Science and Business Media LLC

Subject

Cellular and Molecular Neuroscience,Clinical Neurology,Molecular Biology

Reference43 articles.

1. Frieden TR, Houry D, Baldwin G. CDC Report Congress on traumatic brain injury in the United States: Epidemiology and Rehabilitation, vol. 2015; 2015.

2. Adams JH, Murray MF. Atlas of post-mortem techniques in neuropathology, vol. 1982. Cambridge: Cambridge University Press; 1982.

3. Blumbergs PC, Jones NR, North JB. Diffuse axonal injury in head trauma. J Neurol Neurosurg Psychiatry. 1989;52:838–41.

4. Blumbergs PC, Scott G, Manavis J, Wainwright H, Simpson DA, Mclean AJ. Staining of amyloid precursor protein to study axonal damage in mild head-injury. Lancet. 1994;344(8929):1055–6.

5. Mittl RL, Grossman RI, Hiehle JF, Hurst RW, Kauder DR, Gennarelli TA, et al. Prevalence of MR evidence of diffuse axonal injury in patients with mild head injury and normal head CT findings. AJNR Am J Neuroradiol. 1994;15(8):1583–9.

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