Selected publications

Engedal NSønstevold TBeese CJSelladurai SMelcher TSimensen JEFrankel LBUrbanucci ATorgersen ML (2022)
Measuring Autophagic Cargo Flux with Keima-Based Probes
Methods Mol Biol244599-115
DOI 10.1007/978-1-0716-2071-7_7PubMed 34972988

Sønstevold TEngedal NTorgersen ML (2021)
Perturbation of Cellular Redox Homeostasis Dictates Divergent Effects of Polybutyl Cyanoacrylate (PBCA) Nanoparticles on Autophagy
Cells10 (12)
DOI 10.3390/cells10123432PubMed 34943939

Schläfli AMTokarchuk IParejo SJutzi SBerezowska SEngedal N*Tschan MP* (2021)
ALK inhibition activates LC3B-independent, protective autophagy in EML4-ALK positive lung cancer cells
Sci Rep11 (1)9011
DOI 10.1038/s41598-021-87966-6PubMed 33907223

*shared senior authorship

Humbert M, Morán M, de la Cruz-Ojeda P, Muntané J, Wiedmer T, Apostolova N, McKenna SL, Velasco G, Balduini W, Eckhart L, Janji B, Sampaio-Marques B, Ludovico P, Žerovnik E, Langer R, Perren A, Engedal N, Tschan MP (2020)
Assessing Autophagy in Archived Tissue or How to Capture Autophagic Flux from a Tissue Snapshot
Biology (Basel), 9 (3)
DOI 10.3390/biology9030059, PubMed 32245178

Lindner P, Christensen SB, Nissen P, Møller JV, Engedal N (2020)**
Cell death induced by the ER stressor thapsigargin involves death receptor 5, a non-autophagic function of MAP1LC3B, and distinct contributions from unfolded protein response components
Cell Commun Signal, 18 (1), 12
DOI 10.1186/s12964-019-0499-z, PubMed 31987044

**Selected by Editor-in-chief as Feature article on the front of the Journal webpage (March-June 2020).

Zhen Y, Spangenberg H, Munson MJ, Brech A, Schink KO, Tan KW, Sørensen V, Wenzel EM, Radulovic M, Engedal N, Simonsen A, Raiborg C, Stenmark H (2019)
ESCRT-mediated phagophore sealing during mitophagy
Autophagy, 16 (5), 826-841
DOI 10.1080/15548627.2019.1639301, PubMed 31366282

Luhr M, Torgersen ML, Szalai P, Hashim A, Brech A, Staerk J, Engedal N (2019)
The kinase PERK and the transcription factor ATF4 play distinct and essential roles in autophagy resulting from tunicamycin-induced ER stress
J Biol Chem, 294 (20), 8197-8217
DOI 10.1074/jbc.RA118.002829, PubMed 30926605

Szalai P, Parys JB, Bultynck G, Christensen SB, Nissen P, Møller JV, Engedal N (2018)***
Nonlinear relationship between ER Ca2+ depletion versus induction of the unfolded protein response, autophagy inhibition, and cell death
Cell Calcium, 76, 48-61
DOI 10.1016/j.ceca.2018.09.005, PubMed 30261424

*** https://f1000.com/prime/734044750#

Mauthe M, Orhon I, Rocchi C, Zhou X, Luhr M, Hijlkema KJ, Coppes RP, Engedal N, Mari M, Reggiori F (2018)
Chloroquine inhibits autophagic flux by decreasing autophagosome-lysosome fusion
Autophagy, 14 (8), 1435-1455
DOI 10.1080/15548627.2018.1474314, PubMed 29940786

Luhr M, Szalai P, Engedal N (2018)
The Lactate Dehydrogenase Sequestration Assay - A Simple and Reliable Method to Determine Bulk Autophagic Sequestration Activity in Mammalian Cells
J Vis Exp (137)
DOI 10.3791/57971, PubMed 30102280

Szalai P, Engedal N (2018)
An Image-based Assay for High-throughput Analysis of Cell Proliferation and Cell Death of Adherent Cells
Bio-protocol, 8 (9), e2835 DOI 10.21769/BioProtoc.2835, PubMed 34286042

Luhr M, Saetre F, Engedal N (2018)
The Long-lived Protein Degradation Assay: an Efficient Method for Quantitative Determination of the Autophagic Flux of Endogenous Proteins in Adherent Cell Lines
Bio-protocol, 8 (9), e2836 DOI 10.21769/BioProtoc.2836PubMed 34286043

Sehgal P, Szalai P, Ylanko J, Olesen C, Praetorius HA, Nissen P, Andrews DW, Christensen SB, Engedal N****, Møller JV*. Inhibition of the sarco/endoplasmic reticulum (ER) Ca2+-ATPase by thapsigargin analogs induces cell death via ER Ca2+ depletion and the unfolded protein response. J Biol Chem. 2017 Dec 1; 292(48):19656-19673.DOI:https://doi.org/10.1074/jbc.M117.796920 PubMed 28972171

****shared corresponding author

Kjos I, Borg Distefano M, Sætre F, Repnik U, Holland P, Jones AT, Engedal N, Simonsen A, Bakke O, Progida C (2017)
Rab7b modulates autophagic flux by interacting with Atg4B
EMBO Rep, 18 (10), 1727-1739
DOI 10.15252/embr.201744069, PubMed 28835545

Engedal N, Seglen PO (2015)
Autophagy of cytoplasmic bulk cargo does not require LC3
Autophagy, 12 (2), 439-41
DOI 10.1080/15548627.2015.1076606, PubMed 26237084

Szalai P, Hagen LK, Sætre F, Luhr M, Sponheim M, Øverbye A, Mills IG, Seglen PO, Engedal N (2015)
Autophagic bulk sequestration of cytosolic cargo is independent of LC3, but requires GABARAPs
Exp Cell Res, 333 (1), 21-38
DOI 10.1016/j.yexcr.2015.02.003, PubMed 25684710

Seglen PO, Luhr M, Mills IG, Sætre F, Szalai P, Engedal N (2015)
Macroautophagic cargo sequestration assays
Methods, 75, 25-36
DOI 10.1016/j.ymeth.2014.12.021, PubMed 25576638

Torgersen ML, Engedal N, Bøe SO, Hokland P, Simonsen A (2013)
Targeting autophagy potentiates the apoptotic effect of histone deacetylase inhibitors in t(8;21) AML cells
Blood, 122 (14), 2467-76
DOI 10.1182/blood-2013-05-500629, PubMed 23970379

Engedal N, Torgersen ML, Guldvik IJ, Barfeld SJ, Bakula D, Sætre F, Hagen LK, Patterson JB, Proikas-Cezanne T, Seglen PO, Simonsen A, Mills IG (2013)
Modulation of intracellular calcium homeostasis blocks autophagosome formation
Autophagy, 9 (10), 1475-90
DOI 10.4161/auto.25900, PubMed 23970164

Publications

Kandathil SA, Akhondi A, Kadletz-Wanke L, Heiduschka G, Engedal N, Brkic FF (2024)
The dual role of autophagy in HPV-positive head and neck squamous cell carcinoma: a systematic review
J Cancer Res Clin Oncol, 150 (2), 56
DOI 10.1007/s00432-023-05514-3, PubMed 38291202

Tamargo-Gómez I, Martínez-García GG, Suárez MF, Mayoral P, Bretones G, Astudillo A, Prieto-Lloret J, Sveen C, Fueyo A, Engedal N, López-Otín C, Mariño G (2023)
Analysis of ATG4C function in vivo
Autophagy, 19 (11), 2912-2933
DOI 10.1080/15548627.2023.2234799, PubMed 37459465

Cao S, Wang JR, Ji S, Yang P, Dai Y, Guo S, Montierth MD, Shen JP, Zhao X, Chen J, Lee JJ, Guerrero PA, Spetsieris N, Engedal N, Taavitsainen S, Yu K, Livingstone J, Bhandari V, Hubert SM, Daw NC, Futreal PA, Efstathiou E, Lim B, Viale A, Zhang J et al. (2022)
Estimation of tumor cell total mRNA expression in 15 cancer types predicts disease progression
Nat Biotechnol, 40 (11), 1624-1633
DOI 10.1038/s41587-022-01342-x, PubMed 35697807