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    Article

    Physical interaction of Cdc28 with Cdc37 in Saccharomyces cerevisiae

    The Cdc37 protein in Saccharomyces cerevisiae is thought to be a kinase-targeting subunit of the chaperone Hsp90. In a genetic screen, four protein kinases were identified as interacting with Cdc37 – Cdc5, Cdc7,...

    M. Mort-Bontemps-Soret, C. Facca, G. Faye in Molecular Genetics and Genomics (2002)

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    Article

    Modifications to the lidar equation due to nonlinear propagation in air

    We study how the well-known lidar equation is affected by the use of ultra-short, high-power laser pulses. Because of the self-focusing and self-guiding, the overlap function ξ, representing the reduction frac...

    G. Faye, J. Kasparian, R. Sauerbrey in Applied Physics B (2001)

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    Article

    Rig2, a RING finger protein that interacts with the Kin28/Ccl1 CTD kinase in yeast

    Kin28/Ccl1, a cyclin-dependent kinase, is essential for the in vivo phosphorylation of the C-terminal domain of the largest subunit of RNA polymerase II in Saccharomyces cerevisiae. In a search for mutations co-...

    G. Faye, M. Simon, J. G. Valay, D. Fesquet, C. Facca in Molecular and General Genetics MGG (1997)

  4. Article

    The Yeast Genome Directory

    This directory was made possible by a unique international collaboration between the 633 scientists whose names appear below. It represents both the first published description of the complete sequence of most...

    A. Goffeau, R. Aert, M. L. Agostini-Carbone, A. Ahmed, M. Aigle, L. Alberghina in Nature (1997)

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    Article

    The complete DNA sequence of yeast chromosome III

    The entire DNA sequence of chromosome III of the yeast Saccharomyces cerevisiae has been determined. This is the first complete sequence analysis of an entire chromosome from any organism. The 315-kilobase sequen...

    S. G. Oliver, Q. J. M. van der Aart, M. L. Agostoni-Carbone, M. Aigle in Nature (1992)

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    Chapter and Conference Paper

    DNA Polymerase δ (POL3) of Saccharomyces cerevisiae

    There are three DNA polymerases in yeast which are essential for cell proliferation. Whereas DNA polymerase α (POL1) might be involved in the initiation of nuclear DNA replication (Pizzagalli et al., 1988), the s...

    G. Faye, F. Fabre, M. Simon, L. Giot in DNA Replication: The Regulatory Mechanisms (1992)

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    Article

    The absence of introns in yeast mitochondria does not abolish mitochondrial recombination

    The respiratory competency of a yeast strain devoid of mitchondrial introns is quite normal. However, it may be asked whether intron-encoded proteins participate in metabolisms other than those of mitochondria...

    A. Boulet, E. Levra-Juillet, J. Perea, G. Faye in Current Genetics (1990)

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    Article

    Temperature-sensitive respiratory-deficient mitochondrial mutations: Isolation and genetic map**

    In order to find new genetic loci and functions on the yeast mitochondrial DNA, especially mutations affecting the mitochondrial protein synthesis apparatus, temperature sensitive mutants have been isolated af...

    M. Bolotin-Fukuhara, G. Faye, H. Fukuhara in Molecular and General Genetics MGG (1977)

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    Article

    Physical and genetic organization of petite and grande yeast mitochondrial DNA

    Mitochondrial DNA was isolated from a series of isonuclear cytoplasmic Petite mutants. These mutants represent various patterns of large deletions as detected genetically by means of several mitochondrial marker ...

    H. Fukuhara, G. Faye, F. Michel, J. Lazowska in Molecular and General Genetics MGG (1974)

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    Article

    Untersuchungen über Aluminiumhydroxyde und -oxyde, 2. Mitt.: Darstellung von Reinst-Aluminiumhydroxyden durch Hydrolyse

    Mit Hilfe der Hydrolyse von organischen Aluminium-verbindungen gelangt man zu sehr reinen und definierten Aluminiumhydroxyden. Besonders das Aluminiumäthylat eignet sich zur Herstellung eines Bayerits, der inf...

    Karl Torkar, H. Biegler, H. Egghart, G. Faye in Monatshefte für Chemie und verwandte Teile… (1960)