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Updated: Aug 30, 2026

In Vivo Modeling of the Morbid Human Genome using Danio rerio
Published on: August 24, 2013
Functional assessment of inherited myeloid neoplasm-associated SAMD9L germline variants via Monoallelic CRISPR
Elena Vuelta1,2, Alessandro Liquori1,3, Matias Morín4
1Hematology Research Group, Instituto de Investigación Sanitaria La Fe, Valencia, Spain.
Abstract:
While the majority of myeloid neoplasms are sporadic, the increasing application of germline genetic testing has led the World Health Organization to designate 'Myeloid malignancies with germline predisposition' as a distinct clinical entity, carrying major implications for clinical care and research. Germline variants in the Sterile alpha motif domain-containing 9-like (SAMD9L) gene are specifically associated with an increased risk for these malignancies. In this study, we functionally modelled two novel SAMD9L variants-p.N697Y and p.K1294*-alongside two previously reported variants (p.T233N and p.H880Q). We generated heterozygous knock-in cellular models in the Human leukemia (HL-60 myeloid cell line) for each variant using homology-directed repair-based Clustered regularly interspaced short palindromic repeats and CRISPR-associated protein 9 (CRISPR/Cas9) gene editing. Functional assays, focused on proliferation and protein translation, confirmed that the p.T233N, p.N697Y and p.K1294* variants all caused a decreased rate of protein translation. These results provide functional evidence to fine-tune the classification of these SAMD9L variants and significantly advance our understanding of the molecular mechanisms by which SAMD9L variants drive inherited myeloid neoplasms.

