Serveur d'exploration MERS - Checkpoint (Istex)

Index « Keywords » - entrée « Saccharomyces cerevisiae »
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SV40 tumor antigen < Saccharomyces cerevisiae < Salivary gland lymphomas  Facettes :

List of bibliographic references

Number of relevant bibliographic references: 7.
Ident.Authors (with country if any)Title
000477 (2011) E. G. Afanasieva [Russie] ; V. V. Kushnirov [Russie] ; M. D. Ter-Avanesyan [Russie]Interspecies transmission of prions
000C70 (2003) M. Zagulski [Pologne] ; D. Kressler [Suisse] ; A.-M. Bécam [France] ; J. Rytka [Pologne] ; C. J. Herbert [France]Mak5p, which is required for the maintenance of the M1 dsRNA virus, is encoded by the yeast ORF YBR142w and is involved in the biogenesis of the 60S subunit of the ribosome
000E31 (2001) Pavel A. Ivanov [Russie] ; Eugene I. Lewitin [Russie] ; Boris I. Shevelev [Russie] ; Gleb V. Fominov [Russie] ; Jana A Wojciechowska [Russie] ; Ali H. Asadi Mobarhan [Russie] ; Yuri V. Vertiev [Russie] ; Nick K. Yankovsky [Russie] ; A. B Shevelev [Russie]Sup35p yeast prion-like protein as an adapter for production of the Gag-p55 antigen of HIV-1 and the L-chain of botulinum neurotoxin in Saccharomyces cerevisiae
000F76 (2000) Robert A. Figler ; Hiroshi Omote ; Robert K. Nakamoto ; Marwan K. Al-ShawiUse of Chemical Chaperones in the Yeast Saccharomyces cerevisiae to Enhance Heterologous Membrane Protein Expression: High-Yield Expression and Purification of Human P-Glycoprotein
001D96 (1992) Patrick Linder [Suisse]Molecular biology of translation in yeast
001F21 (1991) Jane H. Gould [Royaume-Uni] ; Martin R. Hartley [Royaume-Uni] ; Philip C. Welsh [États-Unis] ; Deborah K. Hoshizaki [États-Unis] ; Arthur Frankel [États-Unis] ; Lynne M. Roberts [Royaume-Uni] ; J. Michael Lord [Royaume-Uni]Alteration of an amino acid residue outside the active site of the ricin A chain reduces its toxicity towards yeast ribosomes
002240 (1986) Johannes H. Hegemann [Suisse] ; Raymond David Pridmore [Suisse] ; Rudolph Schneider [Allemagne] ; Peter Philippsen [Suisse]Mutations in the right boundary of Saccharomyces cerevisiae centromere 6 lead to nonfunctional or partially functional centromeres

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