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PMID: 9880330 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Dissociation of the tubulin-sequestering and microtubule catastrophe-promoting activities of oncoprotein 18/stathmin.

Molecular biology of the cell ·Vol. 10 ·No. 1 ·1999-01-00 ·Pages 105-18

Howell B, Larsson N, Gullberg M, Cassimeris L

Abstract

Oncoprotein 18/stathmin (Op18) has been identified recently as a protein that destabilizes microtubules, but the mechanism of destabilization is currently controversial. Based on in vitro microtubule assembly assays, evidence has been presented supporting conflicting destabilization models of either tubulin sequestration or promotion of microtubule catastrophes. We found that Op18 can destabilize microtubules by both of these mechanisms and that these activities can be dissociated by changing pH. At pH 6.8, Op18 slowed microtubule elongation and increased catastrophes at both plus and minus ends, consistent with a tubulin-sequestering activity. In contrast, at pH 7.5, Op18 promoted microtubule catastrophes, particularly at plus ends, with little effect on elongation rates at either microtubule end. Dissociation of tubulin-sequestering and catastrophe-promoting activities of Op18 was further demonstrated by analysis of truncated Op18 derivatives. Lack of a C-terminal region of Op18 (aa 100-147) resulted in a truncated protein that lost sequestering activity at pH 6.8 but retained catastrophe-promoting activity. In contrast, lack of an N-terminal region of Op18 (aa 5-25) resulted in a truncated protein that still sequestered tubulin at pH 6.8 but was unable to promote catastrophes at pH 7.5. At pH 6. 8, both the full length and the N-terminal-truncated Op18 bound tubulin, whereas truncation at the C-terminus resulted in a pronounced decrease in tubulin binding. Based on these results, and a previous study documenting a pH-dependent change in binding affinity between Op18 and tubulin, it is likely that tubulin sequestering observed at lower pH resulted from the relatively tight interaction between Op18 and tubulin and that this tight binding requires the C-terminus of Op18; however, under conditions in which Op18 binds weakly to tubulin (pH 7.5), Op18 stimulated catastrophes without altering tubulin subunit association or dissociation rates, and Op18 did not depolymerize microtubules capped with guanylyl (alpha, beta)-methylene diphosphonate-tubulin subunits. We hypothesize that weak binding between Op18 and tubulin results in free Op18, which is available to interact with microtubule ends and thereby promote catastrophes by a mechanism that likely involves GTP hydrolysis.

MeSH Terms
Animals Binding Sites/genetics Cattle DNA Primers/genetics Dimerization Drug Stability Guanosine Triphosphate/analogs & derivatives,metabolism Hydrogen-Ion Concentration In Vitro Techniques Microtubule Proteins Microtubules/metabolism Peptide Fragments/chemistry,genetics,metabolism Phosphoproteins/chemistry,genetics,metabolism Protein Binding Protein Conformation Sea Urchins Sequence Deletion Stathmin Swine Tubulin/chemistry,metabolism
Chemicals
DNA Primers Microtubule Proteins Peptide Fragments Phosphoproteins Stathmin Tubulin 5'-guanylylmethylenebisphosphonate Guanosine Triphosphate
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Howell B
Department of Biological Sciences, Lehigh University, Bethlehem, Pennsylvania 18015, USA.
Larsson N
Gullberg M
Cassimeris L
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Article Info
Journal
Molecular biology of the cell
Abbr.
Mol Biol Cell
ISSN
1059-1524
Published
1999-01-00
Pages
105-18
Language
English
Region
United States
NLM ID
9201390
PMCID
PMC25157
Subset
IM
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