* Your assessment is very important for improving the workof artificial intelligence, which forms the content of this project
Download Cell wall structure and biogenesis
Cytoplasmic streaming wikipedia , lookup
Cell nucleus wikipedia , lookup
Signal transduction wikipedia , lookup
Cell membrane wikipedia , lookup
Cellular differentiation wikipedia , lookup
Cell culture wikipedia , lookup
Programmed cell death wikipedia , lookup
Extracellular matrix wikipedia , lookup
Biochemical switches in the cell cycle wikipedia , lookup
Endomembrane system wikipedia , lookup
Organ-on-a-chip wikipedia , lookup
Cell growth wikipedia , lookup
Cell wall structure and biogenesis Role of GPI anchors in fungal cell walls. We discovered that GPI anchors cross-link many cell wall proteins to the glucans. This was the basis for the current models of fungal cell walls. Two reviews summarize our knowledge: Gonzalez, M., P.W.J. de Groot, F.M. Klis, and P.N. Lipke. 2009. Glycoconjugate Structure and Function in Fungal Cell Walls. In A. Moran, P. Brennan, O. Holst and F. von Itzstein (eds.) Microbial Glycobiology: Structures, Relevance, and Applications. Elsevier. pp. 169-183. Gonzalez, M., P.N. Lipke, and R. Ovalle. 2009. GPI Proteins in Biogenesis and structure of yeast cell walls. In The Enzymes vol 26, Glycosylphophatidylinositol (GPI) anchoring of proteins, eds. Menon, Kinoshita, Orlean and Tamanoi, Academic Press/Elsevier pp. 321-355. A 2010 paper and a patent application are the start of our ideas to exploit this knowledge to find drug targets to ameliorate fungal infections. Gonzalez, M., N. Goddard, C. Hicks, R. Ovalle, C.K. Jue, and P.N. Lipke. 2010. A Screen for Deficiencies in GPI-Anchorage of Wall Glycoproteins in Yeast. Yeast 27: 583-596. Link to cell wall assembly cartoon We are currently engaged in searches for ways to interfere with this anchorage, as an opening to discovery of new antifungal drugs. Other Papers: Kipnis, P., Thomas, N., Ovalle, R. and Lipke, P.N. 2004. The v-SNARE Bet1p is required for cell wall cross-linking of S. cerevisiae a-Agglutinin. Microbiology 150: 3219-3228. Lipke, P.N. and R. Ovalle. 1998. Yeast Cell Walls: New Structures, New Challenges. J. Bacteriol. 180: 3735-3740 With Dr. Rafael Ovalle, we are also investigating how oxidative drugs destroy fungal cell walls and developing analytic techniques to characterize the products of oxidation. Ovalle, R., C. Soll, F. Lim, C. Flanagan, T. Rotunda, and P.N. Lipke. 2001. Systematic analysis of oxidative degradation of polysaccharides using PAGE and HPLC/MS. Carbohydrate Res. 330: 131-139. Ovalle, R., M. Spencer, M. Thiwamont, and P.N. Lipke. 1999. The spheroplast lysis assay for yeast in microtiter format. Applied Environ. Microbiol. 65: 3325-3327 Ovalle, R., S.T. Lim, B. Holder,C.K. Jue, C. Wood Moore, and P.N. Lipke. 1998. Spheroplast rate assay for determination of cell wall integrity in yeast. Yeast 14: 1159-1166