MAP4 Is the in Vivo Substrate for CDC2 Kinase in HeLa Cells: Identification of an M-Phase Specific and a Cell Cycle-Independent Phosphorylation Site in MAP4
- 1 December 1997
- journal article
- Published by American Chemical Society (ACS) in Biochemistry
- Vol. 36 (50), 15873-15883
- https://doi.org/10.1021/bi971251w
Abstract
We reported previously that cdc2 kinase decreased the microtubule-stabilizing ability of a major HeLa cell microtubule-associated protein, MAP4, by phosphorylation in vitro [Ookata, K., et al. (1995) J. Cell Biol. 128, 849−862]. An important question raised by this study is whether MAP4 is indeed phosphorylated by cdc2 kinase at mitosis in vivo. We present here evidence that cdc2 kinase is the major M-phase MAP4 kinase, and, further, we identify two phosphorylation sites within the proline-rich domain of MAP4. Metabolic 32P labeling showed the increased phosphorylation of MAP4 at mitosis. A specific inhibitor of cdc2 kinase, butyrolactone I, inhibited phosphorylation of MAP4 both in mitotic HeLa cells and in the mitotic HeLa cell extract. The phosphopeptide map analysis revealed the high similarity of in vivo labeled mitotic MAP4 to that phosphorylated by cdc2 kinase in vitro. Ser-696 and Ser-787, both of which lie within SPXK consensus sequences for cdc2 kinase, were identified as phosphorylation sites in the proline-rich region of MAP4 in vivo and in vitro. Immunoblotting with antibodies that recognize the phosphorylation state of Ser-696 or Ser-787 showed that Ser-787 in the SPSK sequence was specifically phosphorylated at mitosis while Ser-696 in the SPEK sequence was phosphorylated both at mitosis and in interphase. These results suggest that cdc2 kinase directly regulates microtubule dynamics at mitosis through phosphorylation of MAP4 at a number of sites, including Ser-787.Keywords
This publication has 18 references indexed in Scilit:
- Initial triggering of M-phase in starfish oocytes: a possible novel component of maturation-promoting factor besides cdc2 kinase.The Journal of cell biology, 1996
- Cyclin B interaction with microtubule-associated protein 4 (MAP4) targets p34cdc2 kinase to microtubules and is a potential regulator of M-phase microtubule dynamics.The Journal of cell biology, 1995
- A 40‐kDa myelin basic protein kinase, distinct from erk1 and erk2, is activated in mitotic HeLa cellsEuropean Journal of Biochemistry, 1994
- Identification and molecular characterization of E-MAP-115, a novel microtubule-associated protein predominantly expressed in epithelial cells.The Journal of cell biology, 1993
- Abnormal tau phosphorylation at Ser396 in alzheimer's disease recapitulates development and contributes to reduced microtubule bindingNeuron, 1993
- CaldesmonCurrent Opinion in Cell Biology, 1993
- Mitogen‐activated‐protein‐kinase‐catalyzed phosphorylation of microtubule‐associated proteins, microtubule‐associated protein 2 and microtubule‐associated protein 4, induces an alteration in their functionEuropean Journal of Biochemistry, 1992
- Cell cycle-dependent changes in the dynamics of MAP 2 and MAP 4 in cultured cells.The Journal of cell biology, 1989
- Microtubule Dynamics and Kinetochore Function in MitosisAnnual Review of Cell Biology, 1988
- Microtubule-associated proteins of HeLa cells: heat stability of the 200,000 mol wt HeLa MAPs and detection of the presence of MAP-2 in HeLa cell extracts and cycled microtubules.The Journal of cell biology, 1982