51cg

Dr Emilie Hollville

Dr Emilie Hollville
Dr Emilie Hollville
Dr Emilie Hollville

Lecturer

Accepting PhDs

51cg
Email Address
emilie.hollville@abdn.ac.uk
Office Address
4.17 Institute of Medical Sciences
Foresterhill Campus
Ashgrove Road West
AB25 2ZD

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School/Department
School of Medicine, Medical Sciences and Nutrition



Biography

I graduated in Cellular Biology and Physiology from the University of Versailles, France, before receiving my PhD in Biochemistry, Molecular and Cellular Biology from the University of Paris-Saclay in 2009. Following my PhD, I obtained a postdoctoral research position at the Smurfit Institute of Genetics, Trinity College Dublin, Ireland. In 2015, I moved to North Carolina, USA, to further gain experience in neuroscience, working as a Research Associate at the Neuroscience Center of the University of North Carolina at Chapel Hill. I was appointed as a Lecturer in Aberdeen in 2022.

My research explores the molecular mechanisms that shape the development, organisation, and function of the nervous system. I am particularly interested in the non-canonical roles of caspases in the development and maintenance of neuronal structure, and in how atypical cullin ubiquitin ligases contribute to neurodevelopmental and neuropsychiatric conditions. Our work combines cellular and molecular neuroscience with neuronal models, microscopy, quantitative image analysis, biochemical approaches, and genetic manipulation to investigate these fundamental processes.

Qualifications

  • PhD Biochemistry, Molecular and Cellular Biology 
    2009 - Université Paris-Saclay, France 
  • MSc Cell Biology and Cancer Genetics 
    2004 - Université Paris-Saclay, France 
  • BSc Cellular Biology and Physiology 
    2003 - Université de Versailles Saint-Quentin en Yvelines, France 

Memberships and Affiliations

Internal Memberships
External Memberships
  • Editorial Advisory Board of the
  • Member of the (BNA)
  • Member of the (FENS)
  • Member of the (SNG)
  • Member of the (BSCB)
  • Member of the

Latest Publications

  • Apoptosis signaling is activated as a transient pulse in neurons

    Spiess, K. L., Geden, M. J., Romero, S. E., Hollville, E., Hammond, E. S., Patterson, R. L., Girardi, Q. B., Deshmukh, M.
    Cell Death & Differentiation, vol. 32, pp. 521-529
    Contributions to Journals: Articles
  • miR-29 is an important driver of aging-related phenotypes

    Swahari, V., Nakamura, A., Hollville, E., Hung, Y., Kanke, M., Kurtz, C. L., Caravia, X. M., Roiz-Valle, D., He, S., Krishnamurthy, J., Kapoor, S., Prasad, V., Flowers, C., Beck, M., Baran-Gale, J., Sharpless, N., López-Otín, C., Sethupathy, P., Deshmukh, M.
    Communications Biology, vol. 7, 1055
    Contributions to Journals: Articles
  • Aberrant miR-29 is a predictive feature of severe phenotypes in pediatric Crohn’s disease

    Shumway, A. J., Shanahan, M. T., Hollville, E., Chen, K., Beasley, C., Villanueva, J. W., Albert, S., Lian, G., Cure, M. R., Schaner, M., Zhu, L. C., Bantumilli, S., Deshmukh, M., Furey, T. S., Sheikh, S. Z., Sethupathy, P.
    JCI Insight, vol. 9, no. 4, e168800
    Contributions to Journals: Articles
  • Discriminating Between Apoptosis, Necrosis, Necroptosis, and Ferroptosis by Microscopy and Flow Cytometry

    Costigan, A., Hollville, E., Martin, S. J.
    Current Protocols, vol. 3, no. 12, e951
    Contributions to Journals: Articles
  • Aberrant miR-29 is a predictive feature of severe phenotypes in pediatric Crohn’s disease

    Shumway, A., Shanahan, M. T., Hollville, E., Chen, K., Beasley, C., Villanueva, J. W., Albert, S., Lian, G., Cure, M. R., Schaner, M., Zhu, L., Bantumilli, S., Deshmukh, M., Furey, T. S., Sheikh, S. Z., Sethupathy, P.
    Working Papers: Preprint Papers

View My Publications

Research

Research Overview

Mechanisms controlling brain maturation and sustaining brain health throughout life


The postnatal programs that mature the nervous system are critical to refine neuronal circuits and connectivity for the emergence of individual behaviour. The genetic factors and pathways required for neuronal maturation (e.g. synaptic development and plasticity, neurite branching and arborization) are often found affected both in neurodevelopmental and neurodegenerative disorders.

My lab focuses on understanding the molecular and cellular pathways that support neuronal maturation and maintenance of lifelong neuronal health and survival. I am particularly interested in understanding the role played by ubiquitin ligases and programmed cell death regulators in these processes.

Arbor-spines reconstructions.png

Relevant publications

  • MicroRNA-29 is essential for brain maturation through regulation of CH methylation. Swahari V, Nakamura A, Hollville E, … , Anton ES, Greenberg ME, Deshmukh M. Cell Reports. 2021 Apr 6;35(1):108946.
  • Apoptotic Cell Death Controls in Neurons. Hollville E, Romero S, Deshmukh M. FEBS J. 2019 Sep;286(17):3276-3298.
  • Physiological functions of non-apoptotic caspase activity in the nervous system. Hollville E, Deshmukh M. Semin Cell Dev Biol. 2018 Oct;82:127-136.

 

Mitochondrial quality control in neurodegenerative disorders


Age-related neurodegenerative disorders affect millions of people worldwide and are characterized by impairment in cognitive and/or motor functions. These disorders develop as a result of neuronal dysfunction in the brain or in the peripheral nervous system that eventually result in neuronal death. Common features of neurodegenerative disorders are mitochondrial function failure and defective clearance of damaged mitochondria.

Mitochondria are central hubs for metabolism, energy production, cytoplasmic calcium buffering, regulation of reactive oxygen species production and inflammation. High metabolic and calcium buffering activities, such as the ones required to sustain normal neuronal function, make mitochondria particularly prone to damage. Cells have developed a quality control mechanism for the targeted elimination of impaired mitochondria by autophagy, a process called mitophagy.

I am interested in understanding the interactions between neuronal activity and function and the mitochondrial quality control pathways.

Parkin-mediated mitophagy - Cell Rep 2014-2.png

Relevant publications

  • Characterization of a Cul9 – Parkin double knockout mouse model for Parkinson’s disease. Hollville E, Joers V, Nakamura A, Swahari V, Tansey MG, Moy SS, Deshmukh M. Scientific Reports. 2020 Oct 9;10(1):16886.
  • Bcl-2 Family Proteins Participate in Mitochondrial Quality Control by Regulating Parkin/PINK1-Dependent Mitophagy. Hollville E, Carroll RG, Cullen SP, Martin SJ. Mol Cell. 2014 Aug 7;55(3):451-66.
  • Parkin Sensitizes Towards Apoptosis Induced by Mitochondrial Depolarization Through Promoting Degradation of Mcl-1. Carroll RG, Hollville E, Martin SJ. Cell Reports. 2014 Nov 20; 9(4):1538–1553.

Research Areas

Accepting PhDs

I am currently accepting PhDs in Biomedical Sciences.

Please get in touch if you would like to discuss your research ideas further.

Biomedical Sciences

  • Supervising
  • Accepting PhDs

Research Specialisms

  • Molecular Biology
  • Cell Biology
  • Neuroscience
  • Biomedical Sciences

Our research specialisms are based on the Higher Education Classification of Subjects (HECoS) which is , published under the licence.

Supervision

My current supervision areas are: Biomedical Sciences.

Current Lab members:

  • Mx Paola Muscolino (PhD Student)
  • Ms Sandra Maria Sajan (PhD Student)
  • Ms Melissa Matos (PhD Student)
  • Ms Satoko Murakami (Research Assistant)
  • Ms Keira Hendry (Research Technician)

Lab PhD students pics.png

 

Past and present Undergraduate and Postgraduate students:

  • June - August 2026: MSc students Lucia Alonso Lorenzo, Ronak Bhardwaj & Tiana Wainwright
  • Oct 2025 - : BSc Neuroscience student Melisa Guzeloglu
  • Oct 2025 - : MBChB Medicine students Althaia Skondra & Bruce Zhang
  • July - August 2025: BSc student Tanisha Khera (Hotstart funded)
  • June - August 2025: MSc students Rebecca Smith & Swathi Kodandarama
  • June - August 2024: BSc student James O'Neill (Hotstart funded)
  • January - March 2024: Honour students Iida Holappa, Jake Bell & Dana Zlateva

Lab students pics.png

Funding and Grants

Grants

  • Biotechnology and Biological Sciences Research Council (BBSRC) - Mid-range equipment for biosciences research (2025/26)
    "Advancing Bioscience Research in Northeast Scotland With A High-Content And High-Throughput Imaging Platform"
  • Academy of Medical Sciences - Springboard award (2024/26)
  • The Royal Society - Research Grant (2023/24)

Studentships/Fellowships:

  • UKRI BBSRC EASTBIO PhD Studentship (2023/27)
  • Development Trust SCIO PhD Studentship (2023/27)

 

Teaching

Teaching Responsibilities

  • Medicine (MBChB) Year 1 Student Selective Component
  • Medicine (MBChB) Year 2 Student Selective Component
  • SM2501 - Research Skills for Medical Sciences
  • BC3503 - Molecular control of cell function
  • SM4501 - Medical Sciences Honours projects
  • MB5518 - Master's Research Tutorials
  • MB5904 - Master's Research Projects

  • Course Coordinator of MB5904 - Master's Research Project
Publications

Page 2 of 3 Results 11 to 20 of 25

  • Physiological functions of non-apoptotic caspase activity in the nervous system

    Hollville, E., Deshmukh, M.
    Seminars in Cell and Developmental Biology, vol. 82, pp. 127-136
    Contributions to Journals: Review articles
  • Differential role of FL-BID and t-BID during verotoxin-1-induced apoptosis in Burkitt's lymphoma cells

    Debernardi, J., Hollville, E., Lipinski, M., Wiels, J., Robert, A.
    Oncogene, vol. 37, pp. 2410-2421
    Contributions to Journals: Articles
  • Measuring apoptosis by microscopy and flow cytometry

    Hollville, E., Martin, S. J.
    Current Protocols in Immunology, vol. 2016, pp. 14.38.1-14.38.24
    Contributions to Journals: Articles
  • Parkin Sensitizes toward Apoptosis Induced by Mitochondrial Depolarization through Promoting Degradation of Mcl-1

    Carroll, R. G., Hollville, E., Martin, S. J.
    Cell Reports, vol. 9, no. 4, pp. 1538-1553
    Contributions to Journals: Articles
  • Bcl-2 family proteins participate in mitochondrial quality control by regulating parkin/PINK1-dependent mitophagy

    Hollville, E., Carroll, R. G., Cullen, S. P., Martin, S. J.
    Molecular Cell, vol. 55, no. 3, pp. 451-466
    Contributions to Journals: Articles
  • Measuring apoptosis by microscopy and flow cytometry

    Henry, C. M., Hollville, E., Martin, S. J.
    Methods, vol. 61, no. 2, pp. 90-97
    Contributions to Journals: Articles
  • Greasing the path to BAX/BAK activation

    Hollville, E., Martin, S. J.
    Contributions to Journals: Short Survey
  • Skin tumors induced by sorafenib; paradoxic RAS-RAF pathway activation and oncogenic mutations of HRAS, TP53, and TGFBR1

    Arnault, J. P., Mateus, C., Escudier, B., Tomasic, G., Wechsler, J., Hollville, E., Soria, J. C., Malka, D., Sarasin, A., Larcher, M., Andrë, J., Kamsu-Kom, N., Boussemart, L., Lacroix, L., Spatz, A., Eggermont, A. M., Druillennec, S., Vagner, S., Eychène, A., Dumaz, N., Robert, C.
    Clinical Cancer Research, vol. 18, no. 1, pp. 263-272
    Contributions to Journals: Articles
  • Treatment with a BH3 mimetic overcomes the resistance of latency III EBV (+) cells to p53-mediated apoptosis

    Pujals, A., Renouf, B., Robert, A., Chelouah, S., Hollville, ?., Wiels, J.
    Cell Death and Disease, vol. 2, no. 7, e184
    Contributions to Journals: Articles
  • Activation of the MAP-kinase pathway in the skin of patients treated with sorafenib: Clinical and molecular characterization of skin tumors associated with the multikinase inhibitor sorafenib

    Mateus, C., Arnault, J., Tomasic, G., Hollville, E., Lacroix, L., Wechsler, J., Escudier, B. J., Eychenne, A., Soria, J., Robert, C.
    Journal of Clinical Oncology, vol. 28, no. 15_Supplement, 9130
    Contributions to Journals: Abstracts
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