bioRxiv ScienceSearch

Biology subjects

Tischer, C.

Publications and source records attributed to Tischer, C..

2 recordsLinked to original sources

Genetic screening identifies a SUMO protease dynamically maintaining centromeric chromatin and the associated centromere complex

Centromeres are defined by a unique self-propagating chromatin structure featuring nucleosomes containing the histone H3 variant CENP-A. CENP-A turns over slower than general chromatin and a key question is whether this unusual stability is intrinsic to CENP-A nucleosomes or rather imposed by external factors. We designed a specific genetic screen to identify proteins involved in CENP-A stability based on SNAP-tag pulse chase labeling. Using a double pulse-labeling approach we simultaneously assay for factors with selective roles in CENP-A chromatin assembly. We discover a series of new proteins involved in CENP-A propagation, including proteins with known roles in DNA replication, repair and chromatin modification and transcription, revealing that a broad set of chromatin regulators impacts in CENP-A transmission through the cell cycle. The key factor we find to strongly affect CENP-A stability is SENP6. This SUMO-protease controls not only the levels of chromatin bound CENP-A but is required for the maintenance of virtually the entire centromere and kinetochore, with the exception of CENP-B. Acute depletion of SENP6 protein reveals its requirement for maintaining centromeric CENP-A levels throughout the cell cycle, suggesting that a dynamic SUMO cycle underlies a continuous surveillance of the centromere complex.

cell biology

Tracking the cells of tumor origin in breast organoids by light sheet microscopy

How tumors arise from individual transformed cells within an intact epithelium is a central, yet unanswered question. Here, we developed a new methodology that combines breast tissue organoids, where oncogenes can be switched on in single cells, with light-sheet imaging that allows us to track cell fates using a big-image-data analysis workflow. The power of this integrated approach is illustrated by our finding that small local groups of transformed cells form tumors while isolated transformed cells do not.

cancer biology