bioRxiv Science⌕ Search

Biology subjects

Vermeren, M.

Publications and source records attributed to Vermeren, M..

2 recordsLinked to original sources

Calyculin A Induces Premature Chromosome Condensation and Chromatin Compaction in G1-Phase HeLa Cells without Histone H1 Phosphorylation

We show here that treatment of HeLa cells with calyculin A, an inhibitor of Protein Phosphatases 1 and 2A, induces premature chromosome condensation (PCC) at any point in interphase of the cell cycle. Chromosomes in G1-phase PCC closely resemble metaphase chromatids in the light microscope, and measurements using FLIM-FRET show that they have the same level of chromatin compaction as metaphase chromosomes. However, histone H1 is not phosphorylated in G1- or early S-phase PCC. These results suggest that H1 phosphorylation is not required for mitotic chromosome condensation and chromatin compaction. They also confirm that Cdk1/cyclin B, which directly phosphorylates histone H1, is not active in G1 and thus is not essential for G1- PCC. We suggest that induction of G1-PCC involves protein kinases or other factors that are either held in an inactive state by protein phosphatases, or constitutively active but countered by phosphatases. The same factors may be involved in the onset of normal mitosis, becoming active when protein phosphatases are downregulated. Induction of PCC with calyculin A should provide a useful system for identifying and studying the biochemical pathways that are required for mitotic chromosome compaction, nuclear envelope breakdown, and other events of mitosis.

cell biology↗

Epithelial memory after respiratory viral infection results in long-lasting enhancement of antigen presentation

BackgroundViral lower respiratory tract infections (LRTIs) can reduce severity of subsequent LRTIs but have also been linked to respiratory allergy development and exacerbation. Here, we show that viral LRTI can imprint lung epithelial cells (LECs), leading to long-term phenotypic and functional changes in their response to subsequent challenges. MethodsMice were infected via intranasal administration of respiratory syncytial virus (RSV). After 28 days, LECs were isolated using cold dispase digestion followed by magnetic-activated cell sorting. Epigenetic changes were assessed using CUT&RUN, while transcriptional changes were evaluated using NanoString and qPCR. Flow cytometry was employed to measure cell surface MHC levels, antigen uptake and processing rates, and OT-I proliferation. ResultsWe identified epigenetic and transcriptomic changes in murine LECs 28 days post respiratory syncytial virus (RSV) infection after recovery in genes associated with major histocompatibility complexes (MHC). Lasting upregulation of MHC-I and MHC-II was further increased following in vivo LPS stimulation. Importantly, MHC upregulation was associated with increased antigen uptake and processing, as well as increased antigen presentation to T cells. ConclusionsOur data suggest that LRTI can induce long-term upregulation of antigen-presentation by LECs, thus facilitating local T cell responses to microbial antigens and allergens, potentially enhancing immunity or in susceptible hosts respiratory allergy.

immunology↗