Yeast Killer Elements Hold Their Hosts Hostage
article has not abstract
Vyšlo v časopise:
Yeast Killer Elements Hold Their Hosts Hostage. PLoS Genet 11(5): e32767. doi:10.1371/journal.pgen.1005139
Kategorie:
Perspective
prolekare.web.journal.doi_sk:
https://doi.org/10.1371/journal.pgen.1005139
Souhrn
article has not abstract
Zdroje
1. Gunge N, Tamaru A, Ozawa F, Sakaguchi K (1981) Isolation and characterization of linear deoxyribonucleic acid plasmids from Kluyveromyces lactis and the plasmid-associated killer character. J Bateriol 145: 382–390.
2. Worsham PL, Bolen PL (1990) Killer toxin production in Pichia acaciae is associated with linear DNA plasmids. Curr Genet 18: 77–80. 2245477
3. Cong YS, Yarrow D, Li YY, Fukuhara H (1994) Linear DNA plasmids from Pichia etchellsii, Debaryomyces hansenii and Wingea robertsiae. Microbiology 140: 1327–1335. 8081497
4. Klassen R, Meinhardt F (2002) Linear plasmids pWR1A and pWR1B of the yeast Wingea robertsiae are associated with a killer phenotype. Plasmid 48: 142–148. 12383731
5. Lu J, Huang B, Esberg A, Johansson MJ, Bystrom AS (2005) The Kluyveromyces lactis γ-toxin targets tRNA anticodons. RNA 11: 1648–1654. 16244131
6. Paluszynski JP, Klassen R, Meinhardt F (2007) Pichia acaciae killer system: genetic analysis of toxin immunity. Appl Environ Microbiol 73: 4373–4378. 17483256
7. Meinhardt F, Kast A, Voges R, Schroth M, Schaffrath R, Klassen R. (2015) Autoselection of cytoplasmic yeast virus like elements encoding toxin/antitoxin systems involves a nuclear barrier for immunity gene expression. PlOS Genet in press.
8. Wickner RB, Fujimura T, Esteban R (2013) Viruses and prions of Saccharomyces cerevisiae. Adv Virus Res 86: 1–36. doi: 10.1016/B978-0-12-394315-6.00001-5 23498901
9. Philliskirk G, Young TW (1975) The occurence of killer character in yeasts of various genera. Antonie van Leeuwenhoik J Microbiol Serol 41: 147–151. 239627
10. Nakayashiki T, Kurtzman CP, Edskes HK, Wickner RB (2005) Yeast prions [URE3] and [PSI+] are diseases. Proc Natl Acad Sci U S A 102: 10575–10580. 16024723
11. Drinnenberg IA, Fink GR, Bartel DP (2011) Compatibility with killer explains the rise of RNAi-deficient fungi. Science 333: 1592. doi: 10.1126/science.1209575 21921191
12. Ridley SP, Sommer SS, Wickner RB (1984) Superkiller mutations in Saccharomyces cerevisiae suppress exclusion of M2 double-stranded RNA by L-A-HN and confer cold sensitivity in the presence of M and L-A-HN. Mol Cell Biol 4(4): 761–770. 6371496
13. Masison DC, Blanc A, Ribas JC, Carroll K, Sonenberg N, Wickner RB. (1995) Decoying the cap- mRNA degradation system by a dsRNA virus and poly(A)- mRNA surveillance by a yeast antiviral system. Mol Cell Biol 15: 2763–2771. 7739557
Štítky
Genetika Reprodukčná medicínaČlánok vyšiel v časopise
PLOS Genetics
2015 Číslo 5
- Je „freeze-all“ pro všechny? Odborníci na fertilitu diskutovali na virtuálním summitu
- Gynekologové a odborníci na reprodukční medicínu se sejdou na prvním virtuálním summitu
Najčítanejšie v tomto čísle
- Drosophila Spaghetti and Doubletime Link the Circadian Clock and Light to Caspases, Apoptosis and Tauopathy
- Autoselection of Cytoplasmic Yeast Virus Like Elements Encoding Toxin/Antitoxin Systems Involves a Nuclear Barrier for Immunity Gene Expression
- Parp3 Negatively Regulates Immunoglobulin Class Switch Recombination
- PERK Limits Lifespan by Promoting Intestinal Stem Cell Proliferation in Response to ER Stress