Aminoacyl-tRNA synthetases (aaRSs) are enzymes that activate L-amino acids for protein synthesis. However, during evolution, aaRSs progressively accrued ?moonlighting? functions that are activated under conditions of diminished protein synthesis and that enable aaRSs to regulate metabolic homeostasis and modulate signal transduction pathways. In particular, Tyrosyl-tRNA synthetase (TyrRS) moves into the nucleus under stress conditions and facilitates DNA repair through poly-ADP-ribose polymerase 1 (PARP1) activation. PARP1, the central regulator of nicotinamide adenine dinucleotide (NAD+) signaling, senses and responds to DNA damage and activates DNA repair pathways. Unrepaired or erroneously repaired DNA double strand breaks (DSBs) in neurons are a major contributing factor in the development of a variety of neurological disorders including Alzheimer?s disease (AD). In particular, accumulation of amyloid ??(A?)? a hallmark of AD, exacerbates the accumulation of DSBs in neurons. Remarkably, PARP1 is downregulated in AD and the TyrRS-PARP1 pathway was shown to attenuate A?-induced neurotoxicity. Stimulation of this pathway could offer a new approach to the treatment of AD and other neurodegenerative diseases. We hypothesize that the L-tyrosine binding pocket of eukaryotic TyrRS can be targeted to design and develop small molecules named TyrRS- Targeting Compounds (TTCs), which will activate the moonlighting functions of TyrRS that stimulate DNA repair, and that such molecules will exert neuroprotective activities in AD-relevant models. In the first year of this project, we have designed and synthesized a series of TTCs on the basis of our work published in Nature, which demonstrated that the cis-isomer of resveratrol (RSV) binds to TyrRS and acts as an L-tyrosine antagonist, activating PARP1-dependent signaling cascades. Some of the newly synthesized TTCs have already shown neuroprotective activity in vitro. Mechanistic analysis indicated that the lead neuroprotective compound activates AKT and upregulates DNA repair proteins. In the remaining period, we will pursue the following Specific Aims.
Under Aim 1, we will continue structure-based design and synthesis of TyrRS Targeting Compounds (TTCs) based on the cis-RSV-bound co-crystal structure of TyrRS and demonstrate that such molecules engage and affect their TyrRS target.
Under Aim 2, we will determine the effect of TTCs on the survival of primary cortical neurons and TyrRS/PARP1-dependent DNA repair and signaling cascades.
Under Aim 3, we will test the in vivo therapeutic potential of TTCs that show neuroprotection in vitro using 5XFAD mouse model of AD. The completion of these Aims will provide proof-of-principle data that would guide the eventual development of a new class of drugs that targets TyrRS to activate PARP1-dependent DNA repair in neurons, with potential applicability to AD and other neurodegenerative diseases that originate from accumulated DNA damage.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Exploratory Grants (P20)
Project #
2P20GM109091-06
Application #
9794384
Study Section
Special Emphasis Panel (ZGM1)
Project Start
Project End
2024-04-30
Budget Start
2019-07-01
Budget End
2020-06-30
Support Year
6
Fiscal Year
2019
Total Cost
Indirect Cost
Name
University of South Carolina at Columbia
Department
Type
DUNS #
041387846
City
Columbia
State
SC
Country
United States
Zip Code
29208
Liang, Jiaxin; Chen, Mengqian; Hughes, Daniel et al. (2018) CDK8 Selectively Promotes the Growth of Colon Cancer Metastases in the Liver by Regulating Gene Expression of TIMP3 and Matrix Metalloproteinases. Cancer Res 78:6594-6606
Chukwurah, Evelyn; Patel, Rekha C (2018) Stress-induced TRBP phosphorylation enhances its interaction with PKR to regulate cellular survival. Sci Rep 8:1020
Singh, Priyanka; Jenkins, Laura M; Horst, Ben et al. (2018) Inhibin Is a Novel Paracrine Factor for Tumor Angiogenesis and Metastasis. Cancer Res 78:2978-2989
Wyatt, Michael D; Reilly, Nicole M; Patel, Shikha et al. (2018) Thiopurine-induced mitotic catastrophe in Rad51d-deficient mammalian cells. Environ Mol Mutagen 59:38-48
Serrao, Anne; Jenkins, Laura M; Chumanevich, Alexander A et al. (2018) Mediator kinase CDK8/CDK19 drives YAP1-dependent BMP4-induced EMT in cancer. Oncogene 37:4792-4808
Varadaraj, Archana; Magdaleno, Carina; Mythreye, Karthikeyan (2018) Deoxycholate Fractionation of Fibronectin (FN) and Biotinylation Assay to Measure Recycled FN Fibrils in Epithelial Cells. Bio Protoc 8:
Liu, Changlong; Banister, Carolyn E; Weige, Charles C et al. (2018) PRDM1 silences stem cell-related genes and inhibits proliferation of human colon tumor organoids. Proc Natl Acad Sci U S A 115:E5066-E5075
Yu, Jin; Zhu, Hong; Taheri, Saeid et al. (2018) Impact of nutrition on inflammation, tauopathy, and behavioral outcomes from chronic traumatic encephalopathy. J Neuroinflammation 15:277
Jenkins, Laura M; Horst, Ben; Lancaster, Carly L et al. (2018) Dually modified transmembrane proteoglycans in development and disease. Cytokine Growth Factor Rev 39:124-136
Alam, Amer; Küng, Raphael; Kowal, Julia et al. (2018) Structure of a zosuquidar and UIC2-bound human-mouse chimeric ABCB1. Proc Natl Acad Sci U S A 115:E1973-E1982

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