Eeva-Liisa Eskelinen
 PhD


eeva-liisa.eskelinen@utu.fi

+358 29 450 3996

+358 50 511 5631

Kiinamyllynkatu 10

Turku

OfficeC341

Kiinamyllynkatu 10, 20520 Turku, Finland
Medisiina C341

ORCID identifierhttps://orcid.org/0000-0003-0006-7785

Website of research group

Research Gate

Full list of publications


Areas of expertise
Cell biology, autophagy, lysosomes, RAB24, electron microscopy, cell imaging

Research community or research topic
1. Biological functions and molecular mechanisms of the small GTPase RAB24. 2. Membrane dynamics in autophagy. Web site: https://sites.utu.fi/eskelinengroup/

Biography

Eeva-Liisa Eskelinen has a long track record in autophagy field, in particular, in  elucidating the fine structure and membrane dynamics of autophagosome biogenesis using electron microscopy. She completed her PhD in 1993 at the University of Jyväskylä, Finland. After that, she worked as postdoctoral researcher in Göttingen, Germany and Helsinki, Finland. Then she moved to Dundee, Scotland, where she worked as an independent investigator (1999-2002). From Scotland she moved to Kiel, Germany and worked as a group leader at the department headed by professor Paul Saftig (2002-2005). In August 2005 she moved back to Finland and worked as a University Lecturer at the Department of Biosciences, University of Helsinki, until 2017. 1st of November 2017 she started as a Professor of medical cell biology at the Institute of Biomedicine, University of Turku, Finland.



Research


The small GTPase RAB24

We study the biological functions and molecular mechanisms of RAB24, a GTPase that we showed to function in the late phase of the macroautophagic pathway. Mutation in RAB24 causes hereditary ataxia in dogs. In addition, RAB24 was shown to be overexpressed in hepatocellular carcinoma, and the overexpression was further shown to facilitate the malignant phenotype of the cancer cells. RAB24 is also overexpressed in non-alcoholic fatty liver disease. We use cell and molecular biological and biochemical approaches in order to clarify the biological functions of RAB24, as well as the molecular mechanisms that mediate these functions.


Membrane dynamics in autophagy

Autophagy is a lysosomal degradation pathway for cytoplasmic material and organelles that maintains cellular homeostasis during nutrient deprivation and stress. Autophagy also contributes to the clearance of damaged organelles and aggregate-prone proteins, protection against metabolic stress and DNA damage, and even to longevity of the organism. Defective autophagy has been connected to many human diseases including cancer, myopathies, metabolic diseases, and neurodegenerative diseases.

We and others showed that autophagosomes form in a subcompartment of the endoplasmic reticulum. A flat membrane cistern called the phagophore emerges first, which then elongates and forms a double-membrane bound autophagosome. Autophagosomes acquire hydrolytic capacity by fusing with endosomes and lysosomes. The origin of autophagosome membranes is one of the longest lasting open questions in the field. We have addressed this question using three-dimensional electron microscopy, live-cell imaging and correlative light-electron microscopy.



Teaching

Eeva-Liisa Eskelinen is the responsible teacher of the course Cell Biology and Histology, aimed for first year students in medicine, dentistry and biomedicine. She is also teaching electron microscopy methods on the course Electron Microscopy in Biomedical Sciences, aimed for MSc students on Biomedical Imaging, and for PhD students interested in the topic.



Publications
  
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  •   (2009)  
    • AutophagyAutophagy
     Yla-Anttila P, Vihinen H, Jokita E, Eskelinen EL
    (
    A1 Refereed original research article in a scientific journal)


  •   (2009)  
    • BBA - Molecular Cell ResearchAutophagy
     Eskelinen EL, Saftig P
    (
    A1 Refereed original research article in a scientific journal)


  • Crosstalk between Hsp70 molecular chaperone, lysosomes and proteasomes in autophagy-mediated proteolysis in human retinal pigment epithelial cells  (2009)  
    • Journal of Cellular and Molecular MedicineAutophagy
     Ryhanen T, Hyttinen JMT, Kopitz J, Rilla K, Kuusisto E, Mannermaa E, Viiri J, Holmberg CI, Immonen I, Meri S, Parkkinen J, Eskelinen EL, Uusitalo H, Salminen A, Kaarniranta K
    (
    A1 Refereed original research article in a scientific journal)


  • Electron microscopic tomography reveals novel features of the relationship between phagophore membranes and endoplasmic reticulum  (2009)  
    • Autophagy
     Yla-Anttila P, Vihinen H, Jokitalo E, Eskelinen EL
    (
    A1 Refereed original research article in a scientific journal)


  • Heat shock proteins as gatekeepers of proteolytic pathways-Implications for age-related macular degeneration (AMD)  (2009)  
    • Ageing Research Reviews
     Kaarniranta K, Salminen A, Eskelinen EL, Kopitz J
    (
    A1 Refereed original research article in a scientific journal)


  • Hypoxia-induced downregulation of autophagy mediator Beclin 1 reduces the susceptibility of malignant intestinal epithelial cells to hypoxia-dependent apoptosis  (2009)  
       Yoo BH, Wu X, Derouet M, Haniff M, Eskelinen EL, Rosen K
      (
      A1 Refereed original research article in a scientific journal)


    • Molecular mechanism of micronucleophagy (piecemeal microautophagy of the nucleus, PMN) in S. cerevisiae  (2009)  
      • Autophagy
       Thumm M, Bremer S, Welter E, Eskelinen EL, Krick R
      (
      A1 Refereed original research article in a scientific journal)


    • MONITORING AUTOPHAGY BY ELECTRON MICROSCOPY IN MAMMALIAN CELLS  (2009)  
      • Methods in Enzymology
       Yla-Anttila P, Vihinen H, Jokitalo E, Eskelinen EL
      (
      C1 Refereed scientific book)


    • Piecemeal microautophagy of the nucleus Genetic and morphological traits  (2009)  
         Krick R, Muhe Y, Prick T, Bredschneider M, Bremer S, Wenzel D, Eskelinen EL, Thumm M
        (
        A1 Refereed original research article in a scientific journal)


      • Guidelines for the use and interpretation of assays for monitoring autophagy in higher eukaryotes  (2008)  
           Klionsky DJ, Abeliovich H, Agostinis P, Agrawal DK, Aliev G, Askew DS, Baba M, Baehrecke EH, Bahr BA, Ballabio A, Bamber BA, Bassham DC, Bergamini E, Bi XN, Biard-Piechaczyk M, Blum JS, Breclesen DE, Brodsky JL, Brumell JH, Brunk UT, Bursch W, Camougrand N, Cebollero E, Cecconi F, Chen YY, Chin LS, Choi A, Chu CT, Chung JK, Clarke PGH, Clark RSB, Clarke SG, Clave C, Cleveland JL, Codogno P, Colombo MI, Coto-Montes A, Cregg JM, Cuervo AM, Debnath J, Demarchi F, Dennis PB, Dennis PA, Deretic V, Devenish RJ, Di Sano F, Dice JF, DiFiglia M, Dinesh-Kumar S, Distelhorst CW, Djavaheri-Mergny M, Dorsey FC, Droge W, Dron M, Dunn WA, Duszenko M, Eissa NT, Elazar Z, Esclatine A, Eskelinen EL, Fesues L, Finley KD, Fuentes JM, Fueyo J, Fujisaki K, Galliot B, Gao FB, Gewirtz DA, Gibson SB, Gohla A, Goldberg AL, Gonzalez R, Gonzalez-Estevez C, Gorski S, Gottlieb RA, Haussinger D, He YW, Heidenreich K, Hill JA, Hoyer-Hansen M, Hu X, Huang WP, Iwasaki A, Jaattela M, Jackson WT, Jiang X, Jin SK, Johansen T, Jung JU, Kadowaki M, Kang C, Kelekar A, Kessel DH, Kiel JAKW, Kim HP, Kimchi A, Kinsella TJ, Kiselyov K, Kitamoto K, Knecht E, Komatsu M, Kominami E, Konclo S, Kovacs AL, Kroemer G, Kuan CY, Kumar R, Kundu M, Landry J, Laporte M, Le WD, Lei HY, Lenardo MJ, Levine B, Lieberman A, Lim KL, Lin FC, Liou W, Liu LF, Lopez-Berestein G, Lopez-Otin C, Lu B, Macleod KF, Malorni W, Martinet W, Matsuoka K, Mautner J, Meijer AJ, Melendez A, Michels P, Miotto G, Mistiaen WP, Mizushima N, Mograbi B, Monastyrska I, Moore MN, Moreira PI, Moriyasu Y, Motyl T, Munz C, Murphy LO, Naqvi NI, Neufeld TP, Nishino I, Nixon RA, Noda T, Nurnberg B, Ogawa M, Oleinick NL, Olsen LJ, Ozpolat B, Paglin S, Palmer GE, Papassideri I, Parkes M, Perlmutter DH, Perry G, Piacentini M, Pinkas-Kramarski R, Prescott M, Proikas-Cezanne T, Raben N, Rami A, Reggiori F, Rohrer B, Rubinsztein DC, Ryan KM, Sadoshima J, Sakagami H, Sakai Y, Sandri M, Sasakawa C, Sass M, Schneider C, Seglen PO, Seleverstov O, Settleman J, Shacka JJ, Shapiro IM, Sibirny A, Silva-Zacarin ECM, Simon HU, Simone C, Simonsen A, Smith MA, Spanel-Borowski K, Srinivas V, Steeves M, Stenmark H, Stromhaug PE, Subauste CS, Sugimoto S, Sulzer D, Suzuki T, Swanson MS, Takeshita F, Talbot NJ, Talloczy Z, Tanaka K, Tanaka K, Tanida I, Taylor GS, Taylor JP, Terman A, Tettamanti G, Thompson CB, Thumm M, Tolkovsky AM, Tooze SA, Truant R, Tumanovska LV, Uchiyama Y, Ueno T, Uzcategui NL, van der Klei I, Vaquero EC, Vellai T, Vogel MW, Wang HG, Webster P, Wiley JW, Xi ZJ, Xiao G, Yahalom J, Yang JM, Yap G, Yin XM, Yoshimori T, Yu L, Yue ZY, Yuzaki M, Zabirnyk O, Zheng XX, Zhu X, Deter RL, Tabas I, Tabas I, Deter RL, Zhu X, Zheng XX, Zabirnyk O, Yuzaki M, Yue ZY, Yu L, Yoshimori T, Yin XM, Yap G, Yang JM
          (
          A1 Refereed original research article in a scientific journal)



        Last updated on 08/12/2023 04:57:25 PM