Related Experiment Videos
Drosophila mixed lineage kinase/slipper, a missing biochemical link in Drosophila JNK signaling
Pradeep Sathyanarayana1, Manoj K Barthwal, Mary Ellen Lane
1The Division of Molecular Cardiology, Cardiovascular Research Institute, College of Medicine, The Texas A&M University System HSC, 1901 South 1st St. Bldg.162, Temple, TX 76504, USA.
Abstract:
Mixed lineage kinases (MLKs) belong to the family of mitogen activated protein kinase kinase kinase (MAPKKK) and cause neuronal cell death mediated through c-Jun, N-terminal kinase (JNK) pathway. Recently, genetic studies in Drosophila revealed the presence of an MLK termed slipper (slpr). However, its biochemical features like physiological substrate, role in different MAPK pathways and developmental and tissue-specific expression pattern were not reported. Here, we report cDNA cloning, expression analysis and biochemical characterization of a Drosophila mixed lineage kinase (dMLK) that is also known as slipper. The protein structure analysis of dMLK/slipper revealed, in addition to the conserved domains, a stretch of glutamine in the amino terminus and an asparagine-threonine stretch at the carboxy-terminus. In situ hybridization and reverse transcriptase polymerase chain reaction (RT-PCR) analysis revealed that dMLK is expressed in early embryonic stages, adult brain and thorax. Ectopic expression of dMLK either in Drosophila S2 or in mammalian HEK293 cells leads to activation of JNK, p38 and extracellular signal regulated kinase (ERK) pathways. Further, dMLK directly phosphorylates Hep, dMKK4 and also their mammalian counterparts, MKK7 and SEK1, in an in vitro kinase assay. Taken together, our results provide for the first time a comprehensive expression profile and new biochemical insight of dMLK/slipper.
Insights
Drosophila mixed lineage kinase (dMLK), also known as slipper, activates JNK, p38, and ERK pathways. This study characterizes dMLK
Area of Science:
- Molecular Biology
- Cell Signaling
- Genetics
Background:
- Mixed lineage kinases (MLKs) are MAPKKK family members involved in neuronal cell death via the JNK pathway.
- Genetic studies identified a Drosophila MLK called slipper (slpr), but its biochemical properties and expression were unknown.
Purpose of the Study:
- To clone, express, and biochemically characterize Drosophila mixed lineage kinase (dMLK)/slipper.
- To elucidate the role of dMLK in MAPK pathways and its expression patterns.
Main Methods:
- cDNA cloning and protein structure analysis of dMLK/slipper.
- In situ hybridization and RT-PCR for expression analysis.
- Ectopic expression in Drosophila S2 and HEK293 cells.
- In vitro kinase assays.
Main Results:
- dMLK/slipper possesses unique N-terminal glutamine and C-terminal asparagine-threonine stretches.
- dMLK is expressed in early embryonic stages, adult brain, and thorax.
- Ectopic dMLK activates JNK, p38, and ERK pathways.
- dMLK directly phosphorylates Hep, dMKK4, MKK7, and SEK1.
Conclusions:
- This study provides the first comprehensive expression profile of dMLK/slipper.
- New biochemical insights into dMLK's function in MAPK signaling are presented.