Search Results - "Han, Jeehae"

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  1. 1

    DDS promotes longevity through a microbiome-mediated starvation signal by Choi, Haeri, Cho, Sung Chun, Ha, Young Wan, Ocampo, Billie, Park, Shirley, Chen, Shiwen, Bennett, Christopher F., Han, Jeehae, Rossner, Ryan, Kang, Jong-Sun, Lee, Yun-ll, Park, Sang Chul, Kaeberlein, Matt

    Published in Translational medicine of aging (2019)
    “…The antibiotic diaminodiphenyl sulfone (DDS) is used in combination with other antibiotics as a first line treatment for leprosy. DDS has been previously…”
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    Journal Article
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    Effective discovery of rare variants by pooled target capture sequencing: A comparative analysis with individually indexed target capture sequencing by Ryu, Seungjin, Han, Jeehae, Norden-Krichmar, Trina M, Schork, Nicholas J, Suh, Yousin

    Published in Mutation research (01-05-2018)
    “…Identification of all genetic variants associated with complex traits is one of the most important goals in modern human genetics. Genome-wide association…”
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    Journal Article
  5. 5

    Genetic signature of human longevity in PKC and NF‐κB signaling by Ryu, Seungjin, Han, Jeehae, Norden‐Krichmar, Trina M., Zhang, Quanwei, Lee, Seunggeun, Zhang, Zhengdong, Atzmon, Gil, Niedernhofer, Laura J., Robbins, Paul D., Barzilai, Nir, Schork, Nicholas J., Suh, Yousin

    Published in Aging cell (01-07-2021)
    “…Gene variants associated with longevity are also associated with protection against cognitive decline, dementia and Alzheimer's disease, suggesting that common…”
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    Journal Article
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    PKC downregulation upon rapamycin treatment attenuates mitochondrial disease by Martin-Perez, Miguel, Grillo, Anthony S., Ito, Takashi K., Valente, Anthony S., Han, Jeehae, Entwisle, Samuel W., Huang, Heather Z., Kim, Dayae, Yajima, Masanao, Kaeberlein, Matt, Villén, Judit

    Published in Nature metabolism (01-12-2020)
    “…Leigh syndrome is a fatal neurometabolic disorder caused by defects in mitochondrial function. Mechanistic target of rapamycin (mTOR) inhibition with rapamycin…”
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    Journal Article
  12. 12

    Discovery of novel non-synonymous SNP variants in 988 candidate genes from 6 centenarians by target capture and next-generation sequencing by Han, Jeehae, Ryu, Seungjin, Moskowitz, David M., Rothenberg, Devorah, Leahy, Daniel J., Atzmon, Gil, Barzilai, Nir, Suh, Yousin

    Published in Mechanisms of ageing and development (01-10-2013)
    “…► Aim to study the role of rare functional variants in human longevity. ► Implementation of target capture and next-generation sequencing. ► Comprehensive…”
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    Journal Article
  13. 13

    Analysis of 41 cancer cell lines reveals excessive allelic loss and novel mutations in the SIRT1 gene by Han, Jeehae, Hubbard, Basil P., Lee, Jaehoon, Montagna, Cristina, Lee, Han-Woong, Sinclair, David A., Suh, Yousin

    Published in Cell cycle (Georgetown, Tex.) (15-01-2013)
    “…SIRT1 is an evolutionarily conserved protein deacetylase that modulates stress response, cellular metabolism and aging in model organisms. While SIRT1 exerts…”
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    Journal Article
  14. 14

    A functional genomics approach to elucidate the role of genome maintenance in human longevity by Han, Jeehae

    Published 01-01-2014
    “…The genetic control of longevity and pro-longevity phenotypes is likely to be determined by subtle variations in many genes involved in multiple genetic…”
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    Dissertation
  15. 15

    Molecular mechanisms of a disease susceptibility variant of SIRT1: Genotoxic stress‐induced, CTCF‐dependent activation of SIRT1 gene expression by Song, Xiaoyuan, Cho, Miook, Han, Jeehae, Hazuda, Helen, Duggirala, Ravindranath, Blangero, John, Rosenfeld, Michael G., Suh, Yousin

    Published in The FASEB journal (01-04-2010)
    “…SIRT1 is an evolutionarily conserved protein deacetylase that modulates life span and stress resistance in model organisms. While increased expression of SIRT1…”
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    Journal Article
  16. 16

    A functional genomics approach to elucidate the role of genome maintenance in human longevity by Han, Jeehae

    “…The genetic control of longevity and pro-longevity phenotypes is likely to be determined by subtle variations in many genes involved in multiple genetic…”
    Get full text
    Dissertation