C-terminal truncation of Dlk/ZIP kinase leads to abrogation of nuclear transport and high apoptotic activity
Open Access
- 2 December 1999
- journal article
- research article
- Published by Springer Nature in Oncogene
- Vol. 18 (51), 7212-7218
- https://doi.org/10.1038/sj.onc.1203169
Abstract
Dlk (also termed ZIP kinase) is a novel serine/threonine kinase with a unique C-terminal domain that is rich in arginine and contains three putative NLS motifs and a functional lecuine zipper. Dlk is indeed localized in the nucleus where it shows a speckled distribution. To elucidate the biological functions of Dlk, we wanted to identify the signals relevant for nuclear transport and further the nuclear structures which Dlk binds to. Expression of various deletion and point mutations of Dlk as GFP fusion proteins revealed that the leucine zipper is required for association with speckles and the most C-terminal NLS is necessary and sufficient for nuclear transport. Interestingly, a C-terminal deletion mutant defective for nuclear transport exhibited a pronounced colocalization with actin filaments and, even more strikingly, was a very potent inducer of apoptosis. This apoptotic activity was abrogated, however, when this mutant was retargeted to the nucleus via a heterologous NLS from large T, indicating that Dlk only exerts an apoptotic activity in the cytoplasm. To identify the speckle like structures to which Dlk binds we performed immunofluorescence analyses with antibodies directed against representative marker proteins of replication, transcription, or splicing centers. None of these marker proteins revealed a colocalization with Dlk. Instead, we found a partial colocalization with PML bodies which seem to play a key role in regulation of apoptosis. Taken together, these data strongly suggest a functional role for Dlk in control of cell survival which is dependent on its subcellular localization.Keywords
This publication has 32 references indexed in Scilit:
- Interaction partners of Dlk/ZIP kinase: co-expression of Dlk/ZIP kinase and Par-4 results in cytoplasmic retention and apoptosisOncogene, 1999
- Signal transduction pathways that regulate cell survival and cell deathOncogene, 1998
- Anti-apoptotic versus pro-apoptotic signal transduction: Checkpoints and stop signs along the road to deathOncogene, 1998
- Cytoplasmic retention of mutant tsp53 is dependent on an intermediate filament protein (Vimentin) scaffoldOncogene, 1998
- Identification and Characterization of an IκB KinaseCell, 1997
- Induction of Apoptosis by ASK1, a Mammalian MAPKKK That Activates SAPK/JNK and p38 Signaling PathwaysScience, 1997
- Signal Transduction Pathways Regulated by Mitogen-activated/Extracellular Response Kinase Kinase Kinase Induce Cell DeathJournal of Biological Chemistry, 1996
- Opposing Effects of ERK and JNK-p38 MAP Kinases on ApoptosisScience, 1995
- Requirement for Phosphatidylinositol-3 Kinase in the Prevention of Apoptosis by Nerve Growth FactorScience, 1995
- Fluorescent labeling of nascent RNA reveals transcription by RNA polymerase II in domains scattered throughout the nucleusThe Journal of cell biology, 1993