Rare flt3 deletion mutants may provide additional treatment options to patients with aml: an approach to individualized medicine
Rare flt3 deletion mutants may provide additional treatment options to patients with aml: an approach to individualized medicine"
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Access through your institution Buy or subscribe The receptor tyrosine kinase (RTK) FLT3 (Fms-like tyrosine kinase-3) is essential for the proliferation, differentiation and survival of
hematopoietic cells.1, 2 Mutations in the gene for _FLT3_ have been described in acute myeloid leukemia (AML) as internal tandem duplications (ITD) localized in the juxtamembrane (JM) domain
and _FLT3_ tyrosine kinase domain (TKD) mutations amounting to 2–30% and 7–10% of patients, respectively. In patients with AML, _FLT3_-ITD confers an unfavorable prognosis.3 In AML,
recently discovered _FLT3_ mutations involve point mutations as well as short deletions in the JM domain, highlighting the importance for a deeper understanding and further studies of these
aberrations.4, 5 The FLT3 JM domain (Supplementary Figure 1a) is indeed the critical regulator region of receptor autoinhibition.6 Kiyoi _et al._7 had shown constitutive activation of the
FLT3 receptor by deletion of a stretch of amino acids in the JM domain, generally duplicated in FLT3-ITD. Transient transfection into HEK293T cells confirmed activation of associated
signaling proteins by several deletion mutants. Even deletion of just one amino acid led to the activation of downstream signaling (Supplementary Figures 1b and c). When retrovirally
expressed in the IL3-dependent pro-B cell line Ba/F3, the _FLT3_ Stop and delLeu (Supplementary Table 1, Id 3 and Id 2, respectively) mutants were not further studied in this work, as we
focused on activating mutations in the JM domain. The delEY and the delIns mutants led to constitutive activation of STAT3, ERK1/2, SFK (Src family kinases), SHP2 and AKT (Figure 1a).
Similar to _FLT3_-ITD, they also activated STAT5. As seen in HEK293T cells, only FLT3-ITD induced upregulated phosphorylation of Y589/Y591. These tyrosines were previously thought to be
essential for STAT5 activation and transforming capacity of the RTK.9 Our data show that STAT5 was partly activated by SFKs in deletion mutant expressing cells (Figure 1b), whereas JAK2
inhibition had no effect on STAT5 phosphorylation (Supplementary Figure 2a). A similarity between FLT3 deletion mutants and the TKD mutant _FLT3_ D835Y (p.Asp835Tyr) is conceivable, as both
do not show an increase in Y589/Y591 phosphorylation.9 Nevertheless, the missing phosphorylation of Y589/591 was associated with low STAT5 activation in D835Y expressing cells but not for
_FLT3_ deletion mutants (Figure 1a). Immunoprecipitation experiments confirmed the phosphorylation of additional tyrosines independent from Y598/Y591 in the deletion mutants, as was already
shown for _FLT3_-ITD (Supplementary Figure 2b).9 FLT3 ligand stimulation of the WT receptor led to the phosphorylation of ERK1/2 and AKT but not of STAT5. Interestingly, STAT3 was not
activated by _FLT3_-ITD, suggesting that the deletion mutants and ITD induced different patterns of downstream signaling. These results were in line with those of Frohling _et al._10 of
STAT3 phosphorylation driven by FLT3 JM point mutations. We found that endoplasmic reticulum targeting or hypoglycosylation of FLT3 delEY mutant by brefeldin A and tunicamycin treatment,
respectively, clearly diminished STAT5 and STAT3 phosphorylation, whereas there was no change with FLT3-ITD (Supplementary Figure 2c), as published.11 The same was seen for the delIns mutant
only with tunicamycin treatment. All mutants exhibited decreased phosphorylation of AKT after brefeldin A and tunicamycin treatment, confirming receptor surface expression as a prerequisite
for PI3K/AKT pathway activation. This is a preview of subscription content, access via your institution RELEVANT ARTICLES Open Access articles citing this article. * FLT3 TARGETING IN THE
MODERN ERA: FROM CLONAL SELECTION TO COMBINATION THERAPIES * Vanessa E. Kennedy * & Catherine C. Smith _International Journal of Hematology_ Open Access 19 December 2023 * HYBRIDIZATION
CAPTURE-BASED NEXT GENERATION SEQUENCING RELIABLY DETECTS FLT3 MUTATIONS AND CLASSIFIES FLT3-INTERNAL TANDEM DUPLICATION ALLELIC RATIO IN ACUTE MYELOID LEUKEMIA: A COMPARATIVE STUDY TO
STANDARD FRAGMENT ANALYSIS * Rong He * , Daniel J. Devine * … David S. Viswanatha _Modern Pathology_ Open Access 30 August 2019 * THE NEW AND RECURRENT FLT3 JUXTAMEMBRANE DELETION MUTATION
SHOWS A DOMINANT NEGATIVE EFFECT ON THE WILD-TYPE FLT3 RECEPTOR * Nadine Sandhöfer * , Julia Bauer * … Karsten Spiekermann _Scientific Reports_ Open Access 27 June 2016 ACCESS OPTIONS
Access through your institution Subscribe to this journal Receive 12 print issues and online access $259.00 per year only $21.58 per issue Learn more Buy this article * Purchase on
SpringerLink * Instant access to full article PDF Buy now Prices may be subject to local taxes which are calculated during checkout ADDITIONAL ACCESS OPTIONS: * Log in * Learn about
institutional subscriptions * Read our FAQs * Contact customer support REFERENCES * McKenna HJ, Stocking KL, Miller RE, Brasel K, De Smedt T, Maraskovsky E _et al_. Mice lacking flt3 ligand
have deficient hematopoiesis affecting hematopoietic progenitor cells, dendritic cells, and natural killer cells. _Blood_ 2000; 95: 3489–3497. CAS PubMed Google Scholar * Mackarehtschian
K, Hardin JD, Moore KA, Boast S, Goff SP, Lemischka IR . Targeted disruption of the flk2/flt3 gene leads to deficiencies in primitive hematopoietic progenitors. _Immunity_ 1995; 3: 147–161.
Article CAS Google Scholar * Kayser S, Schlenk RF, Londono MC, Breitenbuecher F, Wittke K, Du J _et al_. Insertion of FLT3 internal tandem duplication in the tyrosine kinase domain-1 is
associated with resistance to chemotherapy and inferior outcome. _Blood_ 2009; 114: 2386–2392. Article CAS Google Scholar * Reindl C, Bagrintseva K, Vempati S, Schnittger S, Ellwart JW,
Wenig K _et al_. Point mutations in the juxtamembrane domain of FLT3 define a new class of activating mutations in AML. _Blood_ 2006; 107: 3700–3707. Article CAS Google Scholar * Deeb KK,
Smonskey MT, DeFedericis H, Deeb G, Sait SNJ, Wetzler M _et al_. Deletion and deletion/insertion mutations in the juxtamembrane domain of the FLT3 gene in adult acute myeloid leukemia.
_Leuk Res Rep_ 2014; 3: 86–89. PubMed PubMed Central Google Scholar * Griffith J, Black J, Faerman C, Swenson L, Wynn M, Lu F _et al_. The structural basis for autoinhibition of FLT3 by
the juxtamembrane domain. _Mol Cell_ 2004; 13: 169–178. Article CAS Google Scholar * Kiyoi H, Ohno R, Ueda R, Saito H, Naoe T . Mechanism of constitutive activation of FLT3 with internal
tandem duplication in the juxtamembrane domain. _Oncogene_ 2002; 21: 2555–2563. Article CAS Google Scholar * Li L, Bailey E, Greenblatt S, Huso D, Small D . Loss of the wild-type allele
contributes to myeloid expansion and disease aggressiveness in FLT3/ITD knockin mice. _Blood_ 2011; 118: 4935–4945. Article CAS Google Scholar * Rocnik JL, Okabe R, Yu J, Lee BH, Giese N,
Schenkein DP _et al_. Roles of tyrosine 589 and 591 in STAT5 activation and transformation mediated by FLT3-ITD. _Blood_ 2006; 108: 1339–1345. Article CAS Google Scholar * Fröhling S,
Scholl C, Levine RL, Loriaux M, Boggon TJ, Bernard OA _et al_. Identification of driver and passenger mutations of FLT3 by high-throughput DNA sequence analysis and functional assessment of
candidate alleles. _Cancer Cell_ 2007; 12: 501–513. Article Google Scholar * Choudhary C, Olsen JV, Brandts C, Cox J, Reddy PNG, Böhmer FD _et al_. Mislocalized activation of oncogenic
RTKs switches downstream signaling outcomes. _Mol Cell_ 2009; 36: 326–339. Article CAS Google Scholar * Rahmani M, Aust MM, Attkisson E, Williams DC, Ferreira-Gonzalez A, Grant S . Dual
inhibition of Bcl-2 and Bcl-xL strikingly enhances PI3K inhibition-induced apoptosis in human myeloid leukemia cells through a GSK3- and Bim-dependent mechanism. _Cancer Res_ 2013; 73:
1340–1351. Article CAS Google Scholar * Armstrong SA, Mabon ME, Silverman LB, Li A, Gribben JG, Fox EA . FLT3 mutations in childhood acute lymphoblastic leukemia. _Blood_ 2004; 103:
3544–3546. Article CAS Google Scholar * Chang P, Kang M, Xiao A, Chang J, Feusner J, Buffler P _et al_. FLT3 mutation incidence and timing of origin in a population case series of
pediatric leukemia. _BMC Cancer_ 2010; 10: 513. Article Google Scholar * Kim TW, Lee H, Kang Y, Choe MS, Ryu M, Chang HM _et al_. Prognostic significance of c-kit mutation in localized
gastrointestinal stromal tumors. _Clin Cancer Res_ 2004; 10: 3076–3081. Article CAS Google Scholar Download references ACKNOWLEDGEMENTS We thank Kristina Feldberg for expert technical
assistance. We acknowledge Frank D Böhmer for providing the pcDNA3-FLT3 (WT)-HA vector and M-D Hagel for initial cloning of vectors. This work was in part supported by the Novartis
Foundation. AUTHOR CONTRIBUTION NC, RCP, GR, JR, PC, MS, TH, THB, SS and SK designed research. NC, GR, RCP and JR performed research. NC, GR, RCP, PC, TH, SS and SK analyzed data. NC, RCP,
GR, SS and SK wrote the paper. AUTHOR INFORMATION AUTHORS AND AFFILIATIONS * Department of Hematology, Oncology, Hemostaseology and Stem Cell Transplantation, Faculty of Medicine, RWTH
Aachen University, Aachen, Germany N Chatain, J Rossa, M Schemionek, T H Brümmendorf & S Koschmieder * Computational Biophysics, German Research School for Simulation Sciences and
Computational Biomedicine, Institute for Advanced Simulation IAS-5 and Institute of Neuroscience and Medicine INM-9, Forschungszentrum Jülich, Jülich, Germany R C Perera, G Rossetti & P
Carloni * Jülich Supercomputing Centre, Forschungszentrum Jülich, Jülich, Germany G Rossetti * MLL Munich Leukemia Laboratory, Munich, Germany T Haferlach & S Schnittger Authors * N
Chatain View author publications You can also search for this author inPubMed Google Scholar * R C Perera View author publications You can also search for this author inPubMed Google Scholar
* G Rossetti View author publications You can also search for this author inPubMed Google Scholar * J Rossa View author publications You can also search for this author inPubMed Google
Scholar * P Carloni View author publications You can also search for this author inPubMed Google Scholar * M Schemionek View author publications You can also search for this author inPubMed
Google Scholar * T Haferlach View author publications You can also search for this author inPubMed Google Scholar * T H Brümmendorf View author publications You can also search for this
author inPubMed Google Scholar * S Schnittger View author publications You can also search for this author inPubMed Google Scholar * S Koschmieder View author publications You can also
search for this author inPubMed Google Scholar CORRESPONDING AUTHOR Correspondence to S Koschmieder. ETHICS DECLARATIONS COMPETING INTERESTS SK has received honoraria for consultancy from
Novartis, Pfizer, Brystol-Meyers Squibb, and Ariad. TH and SS have equity ownership of MLL. THB has received honoraria for consultancy from Novartis, Pfizer, Brystol-Meyers Squibb. The
remaining authors declare no conflict of interest. ADDITIONAL INFORMATION Supplementary Information accompanies this paper on the Leukemia website SUPPLEMENTARY INFORMATION SUPPLEMENTARY
INFORMATION 1 (DOC 5166 KB) SUPPLEMENTARY INFORMATION 2 (DOC 146 KB) RIGHTS AND PERMISSIONS Reprints and permissions ABOUT THIS ARTICLE CITE THIS ARTICLE Chatain, N., Perera, R., Rossetti,
G. _et al._ Rare FLT3 deletion mutants may provide additional treatment options to patients with AML: an approach to individualized medicine. _Leukemia_ 29, 2434–2438 (2015).
https://doi.org/10.1038/leu.2015.131 Download citation * Published: 27 May 2015 * Issue Date: December 2015 * DOI: https://doi.org/10.1038/leu.2015.131 SHARE THIS ARTICLE Anyone you share
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