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IUBMB Life
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July 3, 2013
A network of interorganellar communications underlies cellular aging
Anna Leonov, Vladimir I Titorenko
Microbial Cell (Graz, Austria)
|
March 31, 2017
Cell-autonomous mechanisms of chronological aging in the yeast <i>Saccharomyces cerevisiae</i>
Anthony Arlia-Ciommo, Anna Leonov, Amanda Piano, et al.
Cell Cycle (Georgetown, Tex.)
|
December 9, 2014
Quasi-programmed aging of budding yeast: a trade-off between programmed processes of cell proliferation, differentiation, stress response, survival and death defines yeast lifespan
Anthony Arlia-Ciommo, Amanda Piano, Anna Leonov, et al.
International Journal of Molecular Sciences
|
March 14, 2015
Mechanisms by which different functional states of mitochondria define yeast longevity
Adam Beach, Anna Leonov, Anthony Arlia-Ciommo, et al.
Frontiers in Physiology
|
September 1, 2012
Integration of peroxisomes into an endomembrane system that governs cellular aging
Adam Beach, Michelle T Burstein, Vincent R Richard, et al.
Molecules (Basel, Switzerland)
|
April 15, 2015
Longevity extension by phytochemicals
Anna Leonov, Anthony Arlia-Ciommo, Amanda Piano, et al.
Frontiers in Physiology
|
July 12, 2012
Caloric restriction extends yeast chronological lifespan by altering a pattern of age-related changes in trehalose concentration
Pavlo Kyryakov, Adam Beach, Vincent R Richard, et al.
Aging
|
August 9, 2013
Mitochondrial membrane lipidome defines yeast longevity
Adam Beach, Vincent R Richard, Anna Leonov, et al.
Cell Cycle (Georgetown, Tex.)
|
November 8, 2013
Macromitophagy, neutral lipids synthesis, and peroxisomal fatty acid oxidation protect yeast from "liponecrosis", a previously unknown form of programmed cell death
Sara Sheibani, Vincent R Richard, Adam Beach, et al.
Cell Cycle (Georgetown, Tex.)
|
August 17, 2012
Lithocholic acid extends longevity of chronologically aging yeast only if added at certain critical periods of their lifespan
Michelle T Burstein, Pavlo Kyryakov, Adam Beach, et al.
Page
of 2
Search research articles
Search
Showing results (1-10 of 18) with videos related to
Sort By:
Page
of 2
IUBMB Life
|
July 3, 2013
A network of interorganellar communications underlies cellular aging
Anna Leonov, Vladimir I Titorenko
Microbial Cell (Graz, Austria)
|
March 31, 2017
Cell-autonomous mechanisms of chronological aging in the yeast <i>Saccharomyces cerevisiae</i>
Anthony Arlia-Ciommo, Anna Leonov, Amanda Piano, et al.
Cell Cycle (Georgetown, Tex.)
|
December 9, 2014
Quasi-programmed aging of budding yeast: a trade-off between programmed processes of cell proliferation, differentiation, stress response, survival and death defines yeast lifespan
Anthony Arlia-Ciommo, Amanda Piano, Anna Leonov, et al.
International Journal of Molecular Sciences
|
March 14, 2015
Mechanisms by which different functional states of mitochondria define yeast longevity
Adam Beach, Anna Leonov, Anthony Arlia-Ciommo, et al.
Frontiers in Physiology
|
September 1, 2012
Integration of peroxisomes into an endomembrane system that governs cellular aging
Adam Beach, Michelle T Burstein, Vincent R Richard, et al.
Molecules (Basel, Switzerland)
|
April 15, 2015
Longevity extension by phytochemicals
Anna Leonov, Anthony Arlia-Ciommo, Amanda Piano, et al.
Frontiers in Physiology
|
July 12, 2012
Caloric restriction extends yeast chronological lifespan by altering a pattern of age-related changes in trehalose concentration
Pavlo Kyryakov, Adam Beach, Vincent R Richard, et al.
Aging
|
August 9, 2013
Mitochondrial membrane lipidome defines yeast longevity
Adam Beach, Vincent R Richard, Anna Leonov, et al.
Cell Cycle (Georgetown, Tex.)
|
November 8, 2013
Macromitophagy, neutral lipids synthesis, and peroxisomal fatty acid oxidation protect yeast from "liponecrosis", a previously unknown form of programmed cell death
Sara Sheibani, Vincent R Richard, Adam Beach, et al.
Cell Cycle (Georgetown, Tex.)
|
August 17, 2012
Lithocholic acid extends longevity of chronologically aging yeast only if added at certain critical periods of their lifespan
Michelle T Burstein, Pavlo Kyryakov, Adam Beach, et al.
Page
of 2