The morphotype heterogeneity in Cryptococcus neoformans
Tài liệu tham khảo
Brown, 2008, A social life for discerning microbes, Cell, 135, 600, 10.1016/j.cell.2008.10.030
Lidstrom, 2010, The role of physiological heterogeneity in microbial population behavior, Nat Chem Biol, 6, 705, 10.1038/nchembio.436
Klein, 2007, Dimorphism and virulence in fungi, Curr Opin Microbiol, 10, 314, 10.1016/j.mib.2007.04.002
Maresca, 1989, Dimorphism in Histoplasma capsulatum: a model for the study of cell differentiation in pathogenic fungi, Microbiol Rev, 53, 186, 10.1128/MMBR.53.2.186-209.1989
Maresca, 2000, Dimorphism in Histoplasma capsulatum and Blastomyces dermatitidis, Contrib Microbiol, 5, 201, 10.1159/000060346
Hilbi, 2007, Environmental predators as models for bacterial pathogenesis, Environ Microbiol, 9, 563, 10.1111/j.1462-2920.2007.01238.x
Wang, 2012, Morphogenesis in fungal pathogenicity: shape, size, and surface, PLoS Pathog, 8, e1003027, 10.1371/journal.ppat.1003027
Buchanan, 1998, What makes Cryptococcus neoformans a pathogen?, Emerg Infect Dis, 4, 71, 10.3201/eid0401.980109
Casadevall, 2012, Amoeba provide insight into the origin of virulence in pathogenic fungi, Adv Exp Med Biol, 710, 1, 10.1007/978-1-4419-5638-5_1
Li, 2011, Sporangiospore size dimorphism is linked to virulence of Mucor circinelloides, PLoS Pathog, 7, e1002086, 10.1371/journal.ppat.1002086
Lin, 2009, Cryptococcus neoformans: morphogenesis, infection, and evolution, Infect Genet Evol, 9, 401, 10.1016/j.meegid.2009.01.013
Pappas, 2013, Cryptococcal infections in non-HIV-infected patients, Trans Am Clin Climatol Assoc, 124, 61
Park, 2009, Estimation of the current global burden of cryptococcal meningitis among persons living with HIV/AIDS, AIDS, 23, 525, 10.1097/QAD.0b013e328322ffac
Shi, 2010, Real-time imaging of trapping and urease-dependent transmigration of Cryptococcus neoformans in mouse brain, J Clin Invest, 120, 1683, 10.1172/JCI41963
Wang, 2012, The link between morphotype transition and virulence in Cryptococcus neoformans, PLoS Pathog, 8, e1002765, 10.1371/journal.ppat.1002765
Crabtree, 2012, Titan cell production enhances the virulence of Cryptococcus neoformans, Infect Immun, 80, 3776, 10.1128/IAI.00507-12
Lin, 2014, Fungal morphogenesis, Cold Spring Harb Perspect Med, 5, a019679, 10.1101/cshperspect.a019679
Blackstock, 1982, Immunosuppression by avirulent, pseudohyphal forms of Cryptococcus neoformans, Mycopathologia, 80, 95, 10.1007/BF02993850
Neilson, 1981, Pseudohyphal forms of Cryptococcus neoformans: decreased survival in vivo, Mycopathologia, 73, 57, 10.1007/BF00443015
Moore, 1993, The alpha-mating type locus of Cryptococcus neoformans contains a peptide pheromone gene, Mol Cell Biol, 13, 1962, 10.1128/MCB.13.3.1962
Okagaki, 2010, Cryptococcal cell morphology affects host cell interactions and pathogenicity, PLoS Pathog, 6, e1000953, 10.1371/journal.ppat.1000953
Wang, 2013, Fungal adhesion protein guides community behaviors and autoinduction in a paracrine manner, Proc Natl Acad Sci U S A, 110, 11571, 10.1073/pnas.1308173110
Shen, 2002, Pheromones stimulate mating and differentiation via paracrine and autocrine signaling in Cryptococcus neoformans, Eukaryot Cell, 1, 366, 10.1128/EC.1.3.366-377.2002
Lin, 2005, Sexual reproduction between partners of the same mating type in Cryptococcus neoformans, Nature, 434, 1017, 10.1038/nature03448
Wang, 2014, Morphotype transition and sexual reproduction are genetically associated in a ubiquitous environmental pathogen, PLoS Pathog, 10, e1004185, 10.1371/journal.ppat.1004185
Lin, 2007, Alpha AD alpha hybrids of Cryptococcus neoformans: evidence of same-sex mating in nature and hybrid fitness, PLoS Genet, 3, 1975, 10.1371/journal.pgen.0030186
Tkacz, 1979, Sexual conjugation in yeast. Cell surface changes in response to the action of mating hormones, J Cell Biol, 80, 326, 10.1083/jcb.80.2.326
McClelland, 2004, Uniqueness of the mating system in Cryptococcus neoformans, Trends Microbiol, 12, 208, 10.1016/j.tim.2004.03.003
Lin, 2010, Transcription factors Mat2 and Znf2 operate cellular circuits orchestrating opposite- and same-sex mating in Cryptococcus neoformans, PLoS Genet, 6, e1000953, 10.1371/journal.pgen.1000953
Steenbergen, 2001, Cryptococcus neoformans interactions with amoebae suggest an explanation for its virulence and intracellular pathogenic strategy in macrophages, Proc Natl Acad Sci U S A, 98, 15245, 10.1073/pnas.261418798
Gancedo, 2001, Control of pseudohyphae formation in Saccharomyces cerevisiae, FEMS Microbiol Rev, 25, 107, 10.1111/j.1574-6976.2001.tb00573.x
Smith, 2003, Isolation and characterization from pathogenic fungi of genes encoding ammonium permeases and their roles in dimorphism, Mol Microbiol, 50, 259, 10.1046/j.1365-2958.2003.03680.x
Phadke, 2013, Unisexual reproduction enhances fungal competitiveness by promoting habitat exploration via hyphal growth and sporulation, Eukaryot Cell, 12, 1155, 10.1128/EC.00147-13
Lin, 2015, Morphology and its underlying genetic regulation impact the interaction between Cryptococcus neoformans and its hosts, Med Mycol, 53, 493, 10.1093/mmy/myv012
Fu, 2013, The production of monokaryotic hyphae by Cryptococcus neoformans can be induced by high temperature arrest of the cell cycle and is independent of same-sex mating, PLoS Pathog, 9, e1003335, 10.1371/journal.ppat.1003335
Velagapudi, 2009, Spores as infectious propagules of Cryptococcus neoformans, Infect Immun, 77, 4345, 10.1128/IAI.00542-09
Fraser, 2005, Same-sex mating and the origin of the Vancouver Island Cryptococcus gattii outbreak, Nature, 437, 1360, 10.1038/nature04220
Ni, 2013, Unisexual and heterosexual meiotic reproduction generate aneuploidy and phenotypic diversity de novo in the yeast Cryptococcus neoformans, PLoS Biol, 11, e1001653, 10.1371/journal.pbio.1001653
Fromtling, 1979, Immunization of mice with an avirulent pseudohyphal form of Cryptococcus neoformans, Mycopathologia, 68, 179, 10.1007/BF00578527
Nadal, 2008, Dimorphism in fungal plant pathogens, FEMS Microbiol Lett, 284, 127, 10.1111/j.1574-6968.2008.01173.x
Molero, 1998, Candida albicans: genetics, dimorphism and pathogenicity, Int Microbiol, 1, 95
Gow, 2012, Importance of the Candida albicans cell wall during commensalism and infection, Curr Opin Microbiol, 15, 406, 10.1016/j.mib.2012.04.005
Botts, 2009, Isolation and characterization of Cryptococcus neoformans spores reveal a critical role for capsule biosynthesis genes in spore biogenesis, Eukaryot Cell, 8, 595, 10.1128/EC.00352-08
Zaragoza, 2010, Fungal cell gigantism during mammalian infection, PLoS Pathog, 6, e1000945, 10.1371/journal.ppat.1000945
Zaragoza, 2013, Titan cells in Cryptococcus neoformans: cells with a giant impact, Curr Opin Microbiol, 16, 409, 10.1016/j.mib.2013.03.006
Li, 2010, Cryptococcus, Proc Am Thorac Soc, 7, 186, 10.1513/pats.200907-063AL
Youk, 2014, Secreting and sensing the same molecule allows cells to achieve versatile social behaviors, Science, 343, 1242782, 10.1126/science.1242782
Hornby, 2001, Quorum sensing in the dimorphic fungus Candida albicans is mediated by farnesol, Appl Environ Microbiol, 67, 2982, 10.1128/AEM.67.7.2982-2992.2001
Guan, 1996, Signal transduction in cell–matrix interactions, Int Rev Cytol, 168, 81, 10.1016/S0074-7696(08)60883-9
Irie, 2012, Self-produced exopolysaccharide is a signal that stimulates biofilm formation in Pseudomonas aeruginosa, Proc Natl Acad Sci U S A, 109, 20632, 10.1073/pnas.1217993109
Hannigan, 2013, Microbial ecology of the skin in the era of metagenomics and molecular microbiology, Cold Spring Harb Perspect Med, 3, a015362, 10.1101/cshperspect.a015362