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Publications

Welcome to the publications section of the Shemesh Lab!

 

Here you can explore the culmination of our rigorous investigations and discoveries. Delve into our diverse range of scientific publications encompassing various topics in Neurobiology and Counter-Disease Engineering. Stay updated with the latest advancements and insights from our lab!

Anti-herpetic tau preserves neurons via the cGAS-STING-TBK1 pathway in Alzheimer’s disease

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Alzheimer’s disease (AD) diagnosis relies on the presence of extracellular β-amyloid (Aβ) and intracellular hyperphosphorylated tau (p-tau). Emerging evidence suggests a potential link between AD pathologies and infectious agents, with herpes simplex virus 1 (HSV-1) being a leading candidate. Our investigation, using metagenomics, mass spectrometry, western blotting, and decrowding expansion pathology, detects HSV-1-associated proteins in human brain samples. Expression of the herpesvirus protein ICP27 increases with AD severity and strongly colocalizes with p-tau but not with Aβ. Modeling in human brain organoids shows that HSV-1 infection elevates tau phosphorylation. Notably, p-tau reduces ICP27 expression and markedly decreases post-infection neuronal death from 64% to 7%. This modeling prompts investigation into the cGAS-STING-TBK1 pathway products, nuclear factor (NF)-κB and IRF-3, which colocalizes with ICP27 and p-tau in AD. Furthermore, experimental activation of STING enhances tau phosphorylation, while TBK1 inhibition prevents it. Together, these findings suggest that tau phosphorylation acts as an innate immune response in AD, driven by cGAS-STING.

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On the cellular pathology of Alzheimer" s disease-reversal of microtubule polarity and impaired vesicles transport revealed by expression of human tau mutant by cultured …

2005

ME Spira, O Shemesh, H Rosenmann, I Ginzburg
REVIEWS IN THE NEUROSCIENCES 16, S61-S61

Rescue of neurons from undergoing hallmark tau-induced Alzheimer's disease cell-pathologies by the antimitotic drug paclitaxel

2013

M Spira, O Shemesh, H Erez
JOURNAL OF MOLECULAR NEUROSCIENCE 51, S118-S118

Cell Body Targeted Sensors

2022

OA Shemesh, C Linghu, KD Piatkevich, ES Boyden, WM Park
US Patent App. 17/312,445

Single-Cell Resolution Optogenetics Via Expression of Soma-Targeted Rhodopsins

2022

C Linghu, IW Chen, D Tanese, V Zampini, OA Shemesh
Rhodopsin: Methods and Protocols, 229-257

On line confocal microscope imaging of nitric oxide induced cytoskeletal restructuring of GCs.

2009

OA Shemesh, ME Spira
Alzheimer's & Dementia 5 (4S_Part_13), P399-P399

(Invited) Neuroengineering Overview

2017

OA Shemesh, ES Boyden
Electrochemical Society Meeting Abstracts 232, 2293-2293

Infection biomarkers in asthma: Important not to miss using the best ones

2022

BJBOAS Nikki M. Schultek, David L. Hahn, Thomas J. Borody, Fred A. Wagshul ...
BMJ Open

Herpes Simplex Virus‐1 Proteins as Drivers for Alzheimer’s Disease Pathologies

2023

OA Shemesh, R Reis, V Hyde
Alzheimer's & Dementia 19, e064819

P3‐190: Tau‐induced microtubules polarity reorientation rather than depolymerization leads to axonal traffic jams, ultrastructural modifications and neurodegeneration

2009

OA Shemesh, ME Spira
Alzheimer's & Dementia 5 (4S_Part_13), P399-P399

Cell body targeted sensors

2020

OA SHEMESH, C LINGHU, KD PIATKEVICH, ES Boyden, WM Park

Somatic opsins for single cell resolution optogenetics

2022

OA Shemesh, C Linghu, E Boyden
US Patent 11,324,824

Population imaging of neural activity in awake behaving mice in multiple brain regions

2019

KD Piatkevich, S Bensussen, H Tseng, SN Shroff, V Gisselle, ...

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