Skip to main navigation Skip to search Skip to main content

Regulation of microtubule dynamics by DIAPH3 influences amoeboid tumor cell mechanics and sensitivity to taxanes

  • Samantha Morley
  • , Sungyong You
  • , Sara Pollan
  • , Jiyoung Choi
  • , Bo Zhou
  • , Martin H. Hager
  • , Kenneth Steadman
  • , Cristiana Spinelli
  • , Kavitha Rajendran
  • , Arkadiusz Gertych
  • , Jayoung Kim
  • , Rosalyn M. Adam
  • , Wei Yang
  • , Ramaswamy Krishnan
  • , Beatrice S. Knudsen
  • , Dolores Di Vizio
  • , Michael R. Freeman
  • Cedars-Sinai Medical Center
  • Boston Children's Hospital
  • Harvard University
  • Beth Israel Deaconess Medical Center

Research output: Contribution to journalArticlepeer-review

41 Scopus citations

Abstract

Taxanes are widely employed chemotherapies for patients with metastatic prostate and breast cancer. Here, we show that loss of Diaphanous-related formin-3 (DIAPH3), frequently associated with metastatic breast and prostate cancers, correlates with increased sensitivity to taxanes. DIAPH3 interacted with microtubules (MT), and its loss altered several parameters of MT dynamics as well as decreased polarized force generation, contractility, and response to substrate stiffness. Silencing of DIAPH3 increased the cytotoxic response to taxanes in prostate and breast cancer cell lines. Analysis of drug activity for tubulin-targeted agents in the NCI-60 cell line panel revealed a uniform positive correlation between reduced DIAPH3 expression and drug sensitivity. Low DIAPH3 expression correlated with improved relapse-free survival in breast cancer patients treated with chemotherapeutic regimens containing taxanes. Our results suggest that inhibition of MT stability arising from DIAPH3 downregulation enhances susceptibility to MT poisons, and that the DIAPH3 network potentially reports taxane sensitivity in human tumors.

Original languageEnglish
Article number12136
JournalScientific Reports
Volume5
DOIs
StatePublished - Jul 16 2015

Fingerprint

Dive into the research topics of 'Regulation of microtubule dynamics by DIAPH3 influences amoeboid tumor cell mechanics and sensitivity to taxanes'. Together they form a unique fingerprint.

Cite this