L
Título: Pneumocysterol [(24Z)-ethylidenelanost-8-en-3β-ol], a rare sterol detected in the opportunistic pathogen Pneumocystis carinii hominis: Structural identity and chemical synthesis
Autores: Kaneshiro, Edna S.
Amit, Zunika
Swonger, Mardie M.
Kreishman, George P.
Brooks, Elwood E.
Kreishman, Mara
Jayasimhulu, Koka
Parish, Edward J.
Sun, Hang
Kizito, Stephen A.
Beach, David H.
Fecha: 1999-01-05
Publicador: The National Academy of Sciences
Fuente: Ver documento
Ver documento
Tipo: Text
Tema: Biological Sciences
Descripción: Pneumocystis carinii pneumonia (PcP) remains among the most prevalent opportunistic infections among AIDS patients. Currently, drugs used clinically for deep mycosis act by binding ergosterol or disrupting its biosynthesis. Although classified as a fungus, P. carinii lacks ergosterol. Instead, the pathogen synthesizes a number of distinct Δ7, 24-alkylsterols, despite the abundance of cholesterol, which it can scavenge from the lung alveolus. Thus, the pathogen-specific sterols appear vital for organism survival and proliferation. In the present study, high concentrations of a C32 sterol were found in human-derived P. carinii hominis. The definitive structural identities of two C-24 alkylated lanosterol compounds, previously not reported for rat-derived P. carinii carinii, were determined by using GLC, MS, and NMR spectroscopy together with the chemical syntheses of authentic standards. The C31 and C32 sterols were identified as euphorbol (24-methylenelanost-8-en-3β-ol) and pneumocysterol [(24Z)-ethylidenelanost-8-en-3β-ol], respectively. The identification of these and other 24-alkylsterols in P. carinii hominis suggests that (i) sterol C-24 methyltransferase activities are extraordinarily high in this organism, (ii) 24-alkylsterols are important components of the pathogen’s membranes, because the addition of these side groups onto the sterol side chain requires substantial ATP equivalents, and (iii) the inefficacy of azole drugs against P. carinii can be explained by the ability of this organism to form 24-alkysterols before demethylation of the lanosterol nucleus. Because mammals cannot form 24-alkylsterols, their biosyntheses in P. carinii are attractive targets for the development of chemotherapeutic strategies against this opportunistic infection.
Idioma: en
Artículos similares:
BRCA1 and BRCA2 protein expressions in an ovotestis of a 46, XX true hermaphrodite por Bernard-Gallon, Dominique J,Déchelotte, Pierre,Vissac, Cécile,Aunoble, Bénédicte,Cravello, Laetitia,Malpuech, Georges,Bignon, Yves-Jean
Glutathione S-transferase M1 null genotype: lack of association with tumour characteristics and survival in advanced breast cancer por Lizard-Nacol, Sarab,Coudert, Bruno,Colosetti, Pascal,Riedinger, Jean-Marc,Fargeot, Pierre,Brunet-Lecomte, Patrick
Transforming growth factors-β are not good biomarkers of chemopreventive efficacy in a preclinical breast cancer model system por Zujewski, JoAnne,Vaughn-Cooke, Anika,Flanders, Kathleen C,Eckhaus, Michael A,Lubet, Ronald A,Wakefield, Lalage M
Smoking and high-risk mammographic parenchymal patterns: a case-control study por Sala, Evis,Warren, Ruth,McCann, Jenny,Duffy, Stephen,Luben , Robert,Day, Nicholas
Increased cell survival by inhibition of BRCA1 using an antisense approach in an estrogen responsive ovarian carcinoma cell line por Annab, Lois A,Hawkins, Rebecca E,Solomon, Greg,Barrett, J Carl,Afshari, Cynthia A
10 
A novel cell culture model for studying differentiation and apoptosis in the mouse mammary gland por Gordon, Katrina E,Binas, Bert,Chapman, Rachel S,Kurian, Kathreena M,Clarkson, Richard W E,John Clark, A,Birgitte Lane, E,Watson, Christine J