Javascript must be enabled to continue!
R399H Mutated ETS Domain Leads to a Functional ETV6 Double-Knock-Out in Acute Leukemia and Completely Alters the Physiological Function of ETV6.
View through CrossRef
Abstract
ETV6 is the only known transcriptional repressor which plays an important role in the malignant transformation of haematopoietic cells in different leukemias.
In most cases of ETV6-AML1 + leukemias, the second ETV6 allele is knocked out by deletions. Other mechanisms of knocking out the second ETV6 allele in acute leukemias carrying ETV6 fusion genes, have not been described as of yet. Recently, we have published that the MT-ALL cell line with multilineage differentiation potential carries an ETV6-ARG fusion gene. The second ETV6 allele carries a point mutation in the highly conserved ETS-domain (G to A, bp 1220), leading to the replacement of arginine, normally directly binding to DNA, by histidine (R399H). Therefore, we investigated whether the R399H point mutation leads to a functional double knock-out and will reduce the DNA binding affinity of ETV6.
For the ETV6 binding studies the single point mutated and wild type ETS-domains were amplified and the proteins were expressed. Electro mobility shift assays (EMSA) were performed with the EBS (ETS binding site) carrying the specific GGAA core motif. The wild type ETS domain (ETSwt) incubated with the EBS showed a clear shift of the protein DNA complex loaded on a gel, but not the point mutated ETS domain (ETSmt). In order to quantify the binding of the ETSwt and mt-domains to EBS we established a transient transfection reporter gene assay. For this assay we constructed vectors which contain the EBS fused to the TK promoter, firefly luciferase serves as reporter gene. After transient cotransfections of HeLa cells with plasmids which expressed the ETSwt- or ETSmt-domain together with the vector containing the EBS(wt or mt), the activities of luciferase were measured in a tube luminometer. As expected, cotransfection of ETSwt and EBSwt reduced luciferase activity up to 75% compared with control vector and EBSwt cotransfection. Cotransfection of ETSmt with EBSwt did not lead to a reduction of luciferase activity. The specificity of the reporter gene analysis was controlled by using EBSmt.
These results show that the transcriptional repressor function of ETV6 is dependent on binding of ETV6-ETS domain to EBS and that the point mutation completely alters the physiological function of ETV6. Further studies would explain whether the multilineage differentiation potential of MT-ALL is dependent on ETV6 double-knock-out.
American Society of Hematology
Title: R399H Mutated ETS Domain Leads to a Functional ETV6 Double-Knock-Out in Acute Leukemia and Completely Alters the Physiological Function of ETV6.
Description:
Abstract
ETV6 is the only known transcriptional repressor which plays an important role in the malignant transformation of haematopoietic cells in different leukemias.
In most cases of ETV6-AML1 + leukemias, the second ETV6 allele is knocked out by deletions.
Other mechanisms of knocking out the second ETV6 allele in acute leukemias carrying ETV6 fusion genes, have not been described as of yet.
Recently, we have published that the MT-ALL cell line with multilineage differentiation potential carries an ETV6-ARG fusion gene.
The second ETV6 allele carries a point mutation in the highly conserved ETS-domain (G to A, bp 1220), leading to the replacement of arginine, normally directly binding to DNA, by histidine (R399H).
Therefore, we investigated whether the R399H point mutation leads to a functional double knock-out and will reduce the DNA binding affinity of ETV6.
For the ETV6 binding studies the single point mutated and wild type ETS-domains were amplified and the proteins were expressed.
Electro mobility shift assays (EMSA) were performed with the EBS (ETS binding site) carrying the specific GGAA core motif.
The wild type ETS domain (ETSwt) incubated with the EBS showed a clear shift of the protein DNA complex loaded on a gel, but not the point mutated ETS domain (ETSmt).
In order to quantify the binding of the ETSwt and mt-domains to EBS we established a transient transfection reporter gene assay.
For this assay we constructed vectors which contain the EBS fused to the TK promoter, firefly luciferase serves as reporter gene.
After transient cotransfections of HeLa cells with plasmids which expressed the ETSwt- or ETSmt-domain together with the vector containing the EBS(wt or mt), the activities of luciferase were measured in a tube luminometer.
As expected, cotransfection of ETSwt and EBSwt reduced luciferase activity up to 75% compared with control vector and EBSwt cotransfection.
Cotransfection of ETSmt with EBSwt did not lead to a reduction of luciferase activity.
The specificity of the reporter gene analysis was controlled by using EBSmt.
These results show that the transcriptional repressor function of ETV6 is dependent on binding of ETV6-ETS domain to EBS and that the point mutation completely alters the physiological function of ETV6.
Further studies would explain whether the multilineage differentiation potential of MT-ALL is dependent on ETV6 double-knock-out.
Related Results
Abstract 1706: Investigating the interaction between ETS family members and mutant p53
Abstract 1706: Investigating the interaction between ETS family members and mutant p53
Abstract
Cancer cases are on the rise globally requiring a deeper understanding of the disease and identification of novel therapeutic targets. Mutations in genes of...
Are Cervical Ribs Indicators of Childhood Cancer? A Narrative Review
Are Cervical Ribs Indicators of Childhood Cancer? A Narrative Review
Abstract
A cervical rib (CR), also known as a supernumerary or extra rib, is an additional rib that forms above the first rib, resulting from the overgrowth of the transverse proce...
Identification of an ETV6–ABL2 fusion transcript in combination with an ETV6 point mutation in a T‐cell acute lymphoblastic leukaemia cell line
Identification of an ETV6–ABL2 fusion transcript in combination with an ETV6 point mutation in a T‐cell acute lymphoblastic leukaemia cell line
Summary. ETV6, a member of the Ets family of transcription factors, is frequently rearranged to various translocation partners in human leukaemias. We previously described a CD3+/...
Discovery and characterization of tumor specific transposable elements as novel potential bio-markers
Discovery and characterization of tumor specific transposable elements as novel potential bio-markers
Découverte et caractérisation d'éléments transposables spécifiques de la tumeur comme potentiels nouveaux biomarqueurs
Les éléments transposables (ETs) sont des séq...
Interaction of murine ets-1 with GGA-binding sites establishes the ETS domain as a new DNA-binding motif.
Interaction of murine ets-1 with GGA-binding sites establishes the ETS domain as a new DNA-binding motif.
The proto-oncogene ets-1 is the founding member of a new family of eukaryotic transcriptional regulators. Using deletion mutants of murine ets-1 cDNA expressed in Escherichia coli,...
Myosin-IIa Is Required for Leukemia Cell Extravasation and Its Inhibition Reduces Leukemia Dissemination and Prolongs Survival in a Mouse Model of Acute Lymphoblastic Leukemia
Myosin-IIa Is Required for Leukemia Cell Extravasation and Its Inhibition Reduces Leukemia Dissemination and Prolongs Survival in a Mouse Model of Acute Lymphoblastic Leukemia
Abstract
Background: Leukemia affects approximately 45,000 people each year in the USA with more than 20,000 fatalities. Many leukemia patients experience initial re...
STAT3 Mutations in Large Granular Lymphocytic Leukemia
STAT3 Mutations in Large Granular Lymphocytic Leukemia
Abstract
Abstract 1606
Introduction:
Large granular lymphocytic leukemia (LGL leukemia) is a rare lymphoprolifera...
Managing Scarcity and Ambition in the NZ ETS
Managing Scarcity and Ambition in the NZ ETS
The fundamental purpose of an emissions trading system (ETS) is to constrain emissions and enable the market to set an emissions price path that facilitates an effective transition...

