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Updated: Jun 10, 2026

Engineering Oncogenic Heterozygous Gain-of-Function Mutations in Human Hematopoietic Stem and Progenitor Cells
Published on: March 10, 2023
JAK2 exon 14 deletion in patients with chronic myeloproliferative neoplasms
Wanlong Ma1, Hagop Kantarjian, Xi Zhang
1Department of Hematology/Oncology, Quest Diagnostics Nichols Institute, San Juan Capistrano, California, USA.
Background:
The JAK2 V617F mutation in exon 14 is the most common mutation in chronic myeloproliferative neoplasms (MPNs); deletion of the entire exon 14 is rarely detected. In our previous study of >10,000 samples from patients with suspected MPNs tested for JAK2 mutations by reverse transcription-PCR (RT-PCR) with direct sequencing, complete deletion of exon 14 (Deltaexon14) constituted <1% of JAK2 mutations. This appears to be an alternative splicing mutation, not detectable with DNA-based testing.
Methodology/Principal Findings:
We investigated the possibility that MPN patients may express the JAK2 Deltaexon14 at low levels (<15% of total transcript) not routinely detectable by RT-PCR with direct sequencing. Using a sensitive RT-PCR-based fluorescent fragment analysis method to quantify JAK2 Deltaexon14 mRNA expression relative to wild-type, we tested 61 patients with confirmed MPNs, 183 with suspected MPNs (93 V617F-positive, 90 V617F-negative), and 46 healthy control subjects. The Deltaexon14 variant was detected in 9 of the 61 (15%) confirmed MPN patients, accounting for 3.96% to 33.85% (mean = 12.04%) of total JAK2 transcript. This variant was also detected in 51 of the 183 patients with suspected MPNs (27%), including 20 of the 93 (22%) with V617F (mean [range] expression = 5.41% [2.13%-26.22%]) and 31 of the 90 (34%) without V617F (mean [range] expression = 3.88% [2.08%-12.22%]). Immunoprecipitation studies demonstrated that patients expressing Deltaexon14 mRNA expressed a corresponding truncated JAK2 protein. The Deltaexon14 variant was not detected in the 46 control subjects.
Conclusions/Significance:
These data suggest that expression of the JAK2 Deltaexon14 splice variant, leading to a truncated JAK2 protein, is common in patients with MPNs. This alternatively spliced transcript appears to be more frequent in MPN patients without V617F mutation, in whom it might contribute to leukemogenesis. This mutation is missed if DNA rather than RNA is used for testing.
Insights
A novel JAK2 exon 14 deletion (Deltaexon14) variant is common in myeloproliferative neoplasms (MPNs). This RNA-based mutation, leading to a truncated JAK2 protein, is often missed by DNA testing and may contribute to MPN development.
Area of Science:
- Hematology
- Molecular Biology
- Oncology
Background:
- The JAK2 V617F mutation is common in myeloproliferative neoplasms (MPNs).
- Complete deletion of JAK2 exon 14 (Deltaexon14) is a rare alternative splicing mutation.
- Deltaexon14 is typically undetectable by standard DNA-based testing.
Purpose of the Study:
- To investigate the prevalence of JAK2 Deltaexon14 in MPN patients using a sensitive RNA-based method.
- To determine if Deltaexon14 is expressed at low levels undetectable by conventional sequencing.
- To correlate Deltaexon14 expression with MPN status and V617F mutation presence.
Main Methods:
- Utilized sensitive RT-PCR-based fluorescent fragment analysis to quantify JAK2 Deltaexon14 mRNA.
- Tested 61 confirmed MPN patients, 183 suspected MPN patients (V617F-positive and negative), and 46 healthy controls.
- Performed immunoprecipitation studies to confirm truncated JAK2 protein expression.
Main Results:
- JAK2 Deltaexon14 was detected in 15% of confirmed MPN patients and 27% of suspected MPN patients.
- The variant was found in 22% of V617F-positive and 34% of V617F-negative suspected MPN patients.
- Deltaexon14 expression correlated with truncated JAK2 protein and was absent in healthy controls.
Conclusions:
- JAK2 Deltaexon14 splice variant expression is common in MPNs.
- This alternatively spliced transcript may contribute to leukemogenesis, particularly in V617F-negative MPNs.
- RNA-based testing is crucial for detecting this mutation, which is missed by DNA analysis.
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