Whole chromosome loss and genomic instability in mouse embryos after CRISPR-Cas9 genome editing

Oct 1, 2021·
Stamatis Papathanasiou
,
Styliani Markoulaki
Logan Blaine
Logan Blaine
,
Mitchell L. Leibowitz
,
Cheng-Zhong Zhang
,
Rudolf Jaenisch
,
David Pellman
· 0 min read
Abstract
Karyotype alterations have emerged as on-target complications from CRISPR-Cas9 genome editing. However, the events that lead to these karyotypic changes in embryos after Cas9-treatment remain unknown. Here, using imaging and single-cell genome sequencing of 8-cell stage embryos, we track both spontaneous and Cas9-induced karyotype aberrations through the first three divisions of embryonic development. We observe the generation of abnormal structures of the nucleus that arise as a consequence of errors in mitosis, including micronuclei and chromosome bridges, and determine their contribution to common karyotype aberrations including whole chromosome loss that has been recently reported after editing in embryos. Together, these data demonstrate that Cas9-mediated germline genome editing can lead to unwanted on-target side effects, including major chromosome structural alterations that can be propagated over several divisions of embryonic development.
Type
Publication
Nature Communications, 12(5855)
Status
Peer-reviewed
publications
Logan Blaine
Authors
PhD Candidate in Bioinformatics and Integrative Genomics

Logan is a Ph.D. candidate in Biomedical Informatics at Harvard Medical School building probabilistic machine learning systems that reason over large-scale biological data. His work in the Pinello Lab develops Bayesian & deep learning models — spanning representation learning, generative modeling, and causal inference — to turn high-throughput single-cell experiments into testable hypotheses about biological mechanism, with the broader goal of building computational systems that can reason under uncertainty and close the loop with experimental biology.

Outside of lab, he enjoys training for marathons (and the occasional IRONMAN triathlon) and bikepacking around Vermont.