Theodor W. Schulte
University of Virginia
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Featured researches published by Theodor W. Schulte.
Cell Stress & Chaperones | 1998
Theodor W. Schulte; Shiro Akinaga; Shiro Soga; William P. Sullivan; Bridget Stensgard; David O. Toft; Leonard M. Neckers
The molecular chaperone Hsp90 plays an essential role in the folding and function of important cellular proteins including steroid hormone receptors, protein kinases and proteins controlling the cell cycle and apoptosis. A 15 A deep pocket region in the N-terminal domain of Hsp90 serves as an ATP/ADP-binding site and has also been shown to bind geldanamycin, the only specific inhibitor of Hsp90 function described to date. We now show that radicicol, a macrocyclic antifungal structurally unrelated to geldanamycin, also specifically binds to Hsp90. Moreover, radicicol competes with geldanamycin for binding to the N-terminal domain of the chaperone, expressed either by in vitro translation or as a purified protein, suggesting that radicicol shares the geldanamycin binding site. Radicicol, as does geldanamycin, also inhibits the binding of the accessory protein p23 to Hsp90, and interferes with assembly of the mature progesterone receptor complex. Radicicol does not deplete cells of Hsp90, but rather increases synthesis as well as the steady-state level of this protein, similar to a stress response. Finally, radicicol depletes SKBR3 cells of p185erbB2, Raf-1 and mutant p53, similar to geldanamycin. Radicicol thus represents a structurally unique antibiotic, and the first non-benzoquinone ansamycin, capable of binding to Hsp90 and interfering with its function.
Investigational New Drugs | 1999
Len Neckers; Theodor W. Schulte; Edward G. Mimnaugh
Heat shock protein 90 is one of the most abundantcellularproteins. Although its functions are still being characterized,itappears to serve as a chaperone for a growing list of cellsignaling proteins, including many tyrosine and serine/threoninekinases, involved in proliferation and/or survival. Thebenzoquinone ansamycin geldanamycin has been shown to bind toHsp90and to specifically inhibit this chaperones function, resultinginclient protein destabilization. Its ability to simultaneouslystimulate depletion of multiple oncogenic proteins suggests thatgeldanamycin, or other molecules capable of targeting Hsp90 incancer cells, may be of clinical benefit.
Cancer Chemotherapy and Pharmacology | 2001
Shiro Soga; Sreenath V. Sharma; Yukimasa Shiotsu; Makiko Shimizu; Harunobu Tahara; Kazuo Yamaguchi; Yoji Ikuina; Chikara Murakata; Tatsuya Tamaoki; Junichi Kurebayashi; Theodor W. Schulte; Leonard M. Neckers; Shiro Akinaga
Abstract.Purpose: Radicicol is a novel hsp90 antagonist, distinct from the chemically unrelated benzoquinone ansamycin compounds, geldanamycin and herbimycin. Both geldanamycin and radicicol bind in the aminoterminal nucleotide-binding pocket of hsp90, destabilizing the hsp90 client proteins, many of which are essential for tumor cell growth. We describe here antitumor activity of a novel oxime derivative of radicicol, KF58333. We also investigated the mechanism of antitumor activity of KF58333 in comparison with its oxime isomer KF58332. Methods: Antiproliferative activities were determined in a panel of breast cancer cell lines in vitro. We also examined inhibition of hsp90 function and apoptosis induction in erbB2-overexpressing human breast carcinoma KPL-4 cells in vitro. Direct binding activity to hsp90 was assessed by hsp90-binding assays using geldanamycin or radicicol beads. In animal studies, we investigated plasma concentrations of these compounds after i.v. injection in BALB/c mice and antitumor activity against KPL-4 cells transplanted into nude mice. Inhibition of hsp90 function and induction of apoptosis in vivo were investigated using tumor specimens from drug-treated animals. Results: KF58333 showed potent antiproliferative activity against all breast cancer cell lines tested in vitro, and was more potent than its stereoisomer KF58332. These results are consistent with the ability of KF58333 to deplete hsp90 client proteins and the induction of apoptosis in KPL-4 cells in vitro. Interestingly, KF58333, but not KF58332, showed significant in vivo antitumor activity accompanied by induction of apoptosis in KPL-4 human breast cancer xenografts. Although the plasma concentrations of these compounds were equivalent, KF58333, but not KF58332, depleted hsp90 client proteins such as erbB2, raf-1 and Akt in the tumor specimen recovered from nude mice. Conclusions: These results suggest that inhibition of hsp90 function, which causes depletion of hsp90 client proteins in tumor, contributes to the antitumor activity of KF58333, and that the stereochemistry of the oxime moiety is important for the biological activity of radicicol oxime derivatives.
Journal of Biological Chemistry | 1997
James P. Grenert; William P. Sullivan; Patrick Fadden; Timothy A. J. Haystead; Jenny Clark; Edward Mimnaugh; Henry Krutzsch; Hans-Joachim Ochel; Theodor W. Schulte; Edward A. Sausville; Leonard M. Neckers; David O. Toft
Cancer Research | 1996
Mikhail V. Blagosklonny; Theodor W. Schulte; Phuongmai Nguyen; Jane B. Trepel; Leonard M. Neckers
Cell Growth & Differentiation | 2000
Won G. An; Theodor W. Schulte; Leonard M. Neckers
Cancer Research | 1995
Mikhail V. Blagosklonny; Theodor W. Schulte; Phuongmai Nguyen; Edward G. Mimnaugh; Jane B. Trepel; Len Neckers
Cancer Research | 1999
Shiro Soga; Leonard M. Neckers; Theodor W. Schulte; Yukimasa Shiotsu; Kazuhito Akasaka; Hiroaki Narumi; Tsutomu Agatsuma; Yoji Ikuina; Chikara Murakata; Tatsuya Tamaoki; Shiro Akinaga
Molecular Endocrinology | 1999
Theodor W. Schulte; Shiro Akinaga; T. Murakata; Tsutomu Agatsuma; Seiji Sugimoto; Hirofumi Nakano; Yong S. Lee; Birgitte B. Simen; Yair Argon; Sara J. Felts; David O. Toft; Leonard M. Neckers; Sreenath V. Sharma
Blood | 2000
Yukimasa Shiotsu; Leonard M. Neckers; Ivo Wortman; Won G. An; Theodor W. Schulte; Shiro Soga; Chikara Murakata; Tatsuya Tamaoki; Shiro Akinaga