Abstract

The parvulin peptidyl-prolyl isomerase Pin1 catalyzes cis-trans isomerization of p(S/T)-P bonds and might alter conformation and function of client proteins. Since the trans conformation of p(S/T)-P bonds is preferred by protein phosphatase 2A (PP2A), Pin1 may facilitate PP2A-mediated dephosphorylation. Juglone irreversibly inhibits parvulins and is often used to study the function of Pin1 in vivo. The drug prevents dephosphorylation of mitotic phosphoproteins, perhaps because they bind Pin1 and are dephosphorylated by PP2A. We show here however that juglone inhibited post-mitotic dephosphorylation and the exit of mitosis, independent of Pin1. This effect involved covalent modification of sulfhydryl groups in proteins essential for metaphase/anaphase transition. Particularly cytoplasmic proteins with a high cysteine content were vulnerable to the drug. Alkylation of sulfhydryl groups altered the conformation of such proteins, as evidenced by the disappearance of antibody epitopes on tubulin and the mitotic checkpoint component BubR1. The latter activates the anaphase-promoting complex/cyclosome, which degrades regulatory proteins, such as cyclin B1 and securins, and is required for mitotic exit. Indeed, juglone-treated cells failed to assemble a mitotic spindle, which correlated with perturbed microtubule dynamics, loss of immunodetectable tubulin, and formation of tubulin aggregates. Juglone also prevented degradation of cyclin B1, independently of the Mps1-controlled mitotic spindle checkpoint. Since juglone affected cell cycle progression at several levels, more specific drugs need to be developed for studies of Pin1 function in vivo.

Highlights

  • Rab4a is phosphorylated during mitosis by Cdk1 on Ser204 [23] and dephosphorylated by phosphatase 2A (PP2A) when cells exit prometaphase

  • 7A and Fig. S4, right column) retained a tubulin staining pattern ished degradation of cyclin B1 and the inhibited dephosphorylthat is typical for prometaphase and failed to assem- ation of mitotic phosphoproteins, we examined the activity of ble a mitotic spindle or align chromosomes in the metaphase spindle checkpoint factors in juglone-treated cells

  • We investigated a possible role of Pin1 in the dephosphorylation of mitotic phosphoproteins by PP2A at the end of mitosis

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Summary

EXPERIMENTAL PROCEDURES

Reagents and Materials—An antibody against phosphoSer204-Rab4a (Rab4a(pS204)) was raised in rabbits with the keyhole limpet hemocyanin-coupled CRQLRpSPRRTQAPN peptide (where pS represents phosphoserine). Purified protein phosphatase PP2A1 was from Upstate Cell Signaling Solutions, SP600125 was from Sigma, and Alexa488-Annexin V and propidium iodide were from Molecular Probes. 0.2 milliunits of purified PP2A1 was incubated with 6,8-difluoro-4-methyl-umbelliferyl phosphate in 100 ␮l of phosphatase reaction buffer (50 mM Tris-HCl, pH 7.0, 100 ␮M CaCl2, 1 mM NiCl2, 100 ␮g/ml bovine serum albumin, 0.05% Tween 20) containing either juglone or PP2A inhibitors. Postmitotic Dephosphorylation Assay—U2OS cells or Rab4transfected CHO cells and Pin1Ϫ/Ϫ MEFs were arrested in prometaphase, released from the mitotic block, and incubated in the presence of various concentrations of juglone (with or without 5 mM L-cysteine) for different periods of time. Immunofluorescence Microscopy—Mitotic Pin1Ϫ/Ϫ MEFs were seeded on poly-L-lysine-coated coverslips and incubated for up to 60 min in the presence of 1 ␮M juglone. The number of cells in different cell cycle phases (M1–M4) was evaluated in Cellquest

RESULTS
IM kDa
CA OA
DISCUSSION
Microtubule disruption in interphase cells
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