Reymundo Villa
University of California, San Diego
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Featured researches published by Reymundo Villa.
Organic Letters | 2012
Reymundo Villa; Qihai Xu; Ohyun Kwon
The total synthesis of the indole alkaloid hirsutine has been achieved, with a key step being the application of our phosphine-catalyzed [4 + 2] annulation of an imine with ethyl α-methylallenoate. From commercially available indole-2-carboxaldehyde, the target was synthesized in 14 steps and 6.7% overall yield.
Haematologica | 2015
Manoj Kumar Kashyap; Deepak Kumar; Reymundo Villa; James J. La Clair; Christopher Benner; Roman Sasik; Harrison Jones; Emanuela M. Ghia; Laura Z. Rassenti; Thomas J. Kipps; Michael D. Burkart; Januario E. Castro
RNA splicing plays a fundamental role in human biology. Its relevance in cancer is rapidly emerging as demonstrated by spliceosome mutations that determine the prognosis of patients with hematologic malignancies. We report studies using FD-895 and pladienolide-B in primary leukemia cells derived from patients with chronic lymphocytic leukemia and leukemia-lymphoma cell lines. We found that FD-895 and pladienolide-B induce an early pattern of mRNA intron retention – spliceosome modulation. This process was associated with apoptosis preferentially in cancer cells as compared to normal lymphocytes. The pro-apoptotic activity of these compounds was observed regardless of poor prognostic factors such as Del(17p), TP53 or SF3B1 mutations and was able to overcome the protective effect of culture conditions that resemble the tumor microenvironment. In addition, the activity of these compounds was observed not only in vitro but also in vivo using the A20 lymphoma murine model. Overall, these findings give evidence for the first time that spliceosome modulation is a valid target in chronic lymphocytic leukemia and provide an additional rationale for the development of spliceosome modulators for cancer therapy.
Organic Letters | 2012
Reymundo Villa; Alexander L. Mandel; Brian D. Jones; James J. La Clair; Michael D. Burkart
The total synthesis of FD-895 was completed through a strategy that featured the use of a tandem esterification ring-closing metathesis (RCM) process to construct the 12-membered macrolide and a modified Stille coupling to append the side chain. These studies combined with detailed analysis of all four possible C16-C17 stereoisomers were used to confirm the structure of FD-895 and identify an analog with an enhanced subnanomolar bioactivity.
Journal of Medicinal Chemistry | 2013
Reymundo Villa; Manoj Kumar Kashyap; Deepak Kumar; Thomas J. Kipps; Januario E. Castro; James J. La Clair; Michael D. Burkart
Targeting the spliceosome with small molecule inhibitors provides a new avenue to target cancer by intercepting alternate splicing pathways. Although our understanding of alternate mRNA splicing remains poorly understood, it provides an escape pathway for many cancers resistant to current therapeutics. These findings have encouraged recent academic and industrial efforts to develop natural product spliceosome inhibitors, including FD-895 (1a), pladienolide B (1b), and pladienolide D (1c), into next-generation anticancer drugs. The present study describes the application of semisynthesis and total synthesis to reveal key structure-activity relationships for the spliceosome inhibition by 1a. This information is applied to deliver new analogs with improved stability and potent activity at inhibiting splicing in patient derived cell lines.
Journal of the American Chemical Society | 2013
Michael Rothmann; MinJin Kang; Reymundo Villa; Ioanna Ntai; James J. La Clair; Neil L. Kelleher; Eli Chapman; Michael D. Burkart
Pantetheine and its corresponding disulfide pantethine play a key role in metabolism as building blocks of coenzyme A (CoA), an essential cofactor utilized in ~4% of primary metabolism and central to fatty acid, polyketide, and nonribosomal peptide synthases. Using a combination of recombinant engineering and chemical synthesis, we show that the disulfide of N-pantoylglycyl-2-aminoethanethiol (GlyPan), with one fewer carbon than pantetheine, can rescue a mutant E. coli strain MG1655ΔpanC lacking a functional pantothenate synthetase. Using mass spectrometry, we show that the GlyPan variant is accepted by the downstream CoA biosynthetic machinery, ultimately being incorporated into essential acyl carrier proteins. These findings point to further flexibility in CoA-dependent pathways and offer the opportunity to incorporate orthogonal analogues.
Cell Stem Cell | 2016
Leslie Crews; Larisa Balaian; Nathaniel Delos Santos; Heather Leu; Angela C. Court; Elisa Lazzari; Anil Sadarangani; Maria Anna Zipeto; James J. La Clair; Reymundo Villa; Anna A. Kulidjian; Rainer Storb; Sheldon R. Morris; Edward D. Ball; Michael D. Burkart; Catriona Jamieson
ACS Chemical Biology | 2016
Deepak Kumar; Manoj Kumar Kashyap; James J. La Clair; Reymundo Villa; Ide Spaanderman; Stephen Chien; Laura Z. Rassenti; Thomas J. Kipps; Michael D. Burkart; Januario E. Castro
Archive | 2013
Michael D. Burkart; James J. La Clair; Brian D. Jones; Alexander Mandel; Reymundo Villa; Januario E. Castro; Manoj Kumar Kashyap; Deepak Kumar
Archive | 2016
Michael D. Burkart; Catriona H. Jamieson; Leslie C. Robertson; Larisa Balaian; Clair James J. La; Reymundo Villa; Heather Leu; Nathaniel Delos Santos
Cancer Research | 2016
Leslie Crews; Larisa Balaian; Heather Leu; Nathaniel Delos Santos; Angela C. Court; Anil Sadarangani; Maria Anna Zipeto; James J. La Clair; Reymundo Villa; Sheldon R. Morris; Rainer Storb; Anna A. Kulidjian; Edward D. Ball; Michael D. Burkart; Catriona Jamieson