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Biology subjects

Serrano, C.

Publications and source records attributed to Serrano, C..

3 recordsLinked to original sources

Simple and Highly Specific Targeting of Resident Microglia with Adeno-Associated Virus

Microglia, as the immune cells of the central nervous system (CNS), play dynamic roles in both health and diseased conditions. The ability to genetically target microglia using viruses is crucial for understanding their functions and advancing microglia-based treatments. We here show that resident microglia can be simply and specifically targeted using adeno-associated virus (AAV) vectors containing a 466-bp DNA fragment from the human IBA1 (hIBA1) promoter. This targeting approach is applicable to both resting and reactive microglia. When combining the short hIBA1 promoter with the target sequence of miR124, up to 95% of transduced cells are identified as microglia. Such a simple and highly specific microglia-targeting strategy may be further optimized for research and therapeutics. Significance StatementBrain microglia play critical roles in human health and diseases. Genetic manipulation of these cells will offer numerous therapeutic opportunities. However, there is a lack of relevant strategies to target these cells with high specificity since they are traditionally considered to be refractory to virus transduction. Through in vivo screening of many promoters, this study identified a short promoter from the human IBA1 gene. When incorporated into lentivirus or adeno-associated virus vectors, this promoter proves effective in driving gene expression with high specificity for brain microglia. Such a simple strategy will facilitate specific approaches for microglia-based research.

neuroscience↗

Tracking genome evolution in single cell clones reveals the rates and features of copy number alterations generated by ongoing chromosomal instability in cancer.

Cancer genomes exhibit extensive chromosomal alterations caused by ongoing Chromosomal Instability (CIN). The ensuing cell-cell heterogeneity facilitates evolution and cancer cell plasticity that can drive therapy resistance, yet cancer CIN driver mechanisms remain essentially uncharacterised. This lack of knowledge presents an untapped opportunity to target vulnerabilities associated with ongoing CIN for therapy. Existing methods to investigate the cellular mechanisms responsible for CIN rely on laborious functional assays, or inference from genomic alteration patterns from sequencing data. Current bulk sequencing derived copy number alteration pattern signatures lack the cell-cell resolution that would reveal recent genomic alterations caused by CIN. Large-scale single cell sequencing of cancer cell populations is now emerging. However, it is not known whether the effects of selection still obscure the spectrum of genomic alterations caused by recent CIN. To address this, we employed a single-cell whole-genome sequencing (scWGS) clonal outgrowth technique, that allows us to track the real-time evolution of cancer genomes at the single-cell level. Single cancer cells surprisingly re-establish heterogeneity that matches their parental population within [~]22 generations. By comparing the features of copy number alterations at different evolutionary timepoints we reveal that some alteration types are likely under negative selection and are thus only apparent in the most recent cell divisions, and not in the parental population. In one cell line we identify a particular chromosome subject to recurrent chromosomal deletions, and validated that this chromosome wasinvolved frequently in mis-segregation events during anaphase using fluorescence In-Situ hybridisation.

cancer biology↗

Exposure to an enriched environment improves colonic epithelial barrier integrity and attenuates mouse experimental colitis by modulating a Myc-driven gene regulatory network

Withdrawal StatementThe authors have withdrawn their manuscript owing to erroneous labeling in two figures that have recently come to light. Experiments aiming to confirm the data presented are underway. Therefore, the authors do not wish this work to be cited as reference for the project. If you have any questions, please contact the corresponding author.

immunology↗