Fırsatlara Göz At
Oturum aç
Çalışma Alanınız Fırsatları kaydedin ve başvuru ilerlemenizi takip edin.
Doktora Aktif İngilizce
Doğrulandı Resmî Kaynak

Fırsat Ayrıntıları

PhD-student to study transcription stress in neurons

Son Başvuru Tarihi
September 14, 2026
Çalışma türü
Full time
Pozisyon Türü
Doktora
Bölüm
Erasmus MC
Yayın Tarihi
August 24, 2026
Araştırma Alanı
Neuroscience
Kaynak ayrıntıları sınırlı olabilir

Opportunità'daki bazı yapılandırılmış ayrıntılar hâlâ eksik olabilir. Başvurmadan önce lütfen resmî üniversite sayfasını okuyun.

Explicify özeti

İlan Özeti

A PhD student will investigate how mechanical stress impacts transcription‑coupled repair in human iPSC‑derived neurons, using CRISPR‑Cas9 editing and advanced live‑cell imaging. The project explores the role of cellular and‑tissue mechanics on the DNA‑repair pathways that …

Kayıtlı ilan içeriğinden üretildi. Ayrıntıları her zaman resmî ilanda doğrulayın.

Proje Açıklaması

Correct gene transcription by RNA polymerase II to transcribe new RNA molecules is crucial for proper cell function. However, transcription by RNA polymerases can be blocked by DNA damage, for example by UV-light or other chemicals. This transcription-blocking DNA damage can therefore cause cellular dysfunction and cell death, eventually resulting in DNA damage-induced aging and genome instability. Cells counteract these deleterious effects by transcription-coupled repair (TCR), which specifically removes DNA damage in our genes, thereby safeguarding transcription. Our lab has identified several important factors that provided novel insights in this repair pathway (van Sluis et al., Nature Cell Biology 2024; Ramadhin et al., Molecular Cell 2024; van Toorn et al., Molecular Cell, 2022; Geijer et al., Nature Cell Biology, 2021; Tresini et al. Nature, 2015; Schwertman et al. Nature Genetics, 2012).

In this project, we will investigate how mechanical stress affects transcription-coupled repair and transcription stress in differentiated human neurons. Neurons are long-lived, non-dividing cells that depend strongly on continuous and accurate transcription, but they are also exposed to changes in cellular and nuclear mechanics that may interfere with genome stability. Using iPSC-derived neurons, CRISPR-Cas9 gene editing and advanced live-cell imaging, we will investigate how mechanical stress influences transcription stress and transcription-coupled repair, and how defects in these pathways alter the mechanical properties and stress responses of neurons. This project will provide new mechanistic insight into the interplay between mechanical stress, transcription integrity and DNA repair, and may help explain why differentiated neurons are particularly vulnerable during aging and neurodegenerative disease.


Akademik İletişim

Erasmus MC
Last Update Erasmus University Medical Center werkenbijerasmusmc.nl
Back to top
0%