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UNC119 regulates T-cell receptor signalling in primary T cells and T acute lymphocytic leukaemia

Samarakoon, Y. et al. (2025) UNC119 regulates T-cell receptor signalling in primary T cells and T acute lymphocytic leukaemia. Life Science Alliance, 8(3), e202403066. (doi: 10.26508/lsa.202403066) (PMID:39814552) (PMCID:PMC11735834)

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Abstract

T-cell receptor recognition of cognate peptide–MHC leads to the formation of signalling domains and the immunological synapse. Because of the close membrane apposition, there is rapid exclusion of CD45, and therefore LCK activation. Much less is known about whether spatial regulation of the intracellular face dictates LCK activity and TCR signal transduction. Moreover, as LCK is a driver in T acute lymphocytic leukaemia, it is important to understand its regulation. Here, we demonstrate a direct role of the ciliary protein UNC119 in trafficking LCK to the immunological synapse. Inhibiting UNC119 reduces localisation of LCK without impairing LCK phosphorylation and reduces T-cell receptor signal transduction. Although important for initial LCK reorganisation, activated CD8+ T cells retained their ability to kill target tumour cells when UNC119 was inhibited. UNC119 was also needed to sustain proliferation in patient-derived T-ALL cells. UNC119 may therefore represent a novel therapeutic target in T acute lymphocytic leukaemia, which alters the subcellular localisation of LCK in T acute lymphocytic leukaemia cells but preserves the function of existing cytotoxic lymphocytes.

Item Type:Articles
Additional Information:This work was supported by CRUK core funding to the Scotland Institute (A31287), CRUK core funding to EW Roberts (A1920), CRUK core funding to PA Gammage (A1920), European Research Council (ERC) Starting Grant to PAM (EP/X035581/1), NIH grant to PA Gammage (R37CA276200), CCLG Project Grant to C Halsey (CCLGA 2020 24), CRUK Programme Foundation Award to C Halsey (DRCPFA-Nov21\100001), Associazione Italiana per la Ricerca sul Cancro Individual Grant 2016 to S Marmiroli (19186), Not-for-profit Associazione Mantovana per la Ricerca sul Cancro to S Marmiroli (2021/E95F21001040007), Not-for-profit Associazione Mantovana per la Ricerca sul Cancro to S Marmiroli (2023/E93C23000570007), and Associazione Italiana per la Ricerca sul Cancro under MFAG 2018 to V Serafin (21771).
Status:Published
Refereed:Yes
Glasgow Author(s) Enlighten ID:Roberts, Dr Edward and Gammage, Professor Payam and Ismail, Dr Shehab and Patterson, Mr Shaun and Mahmood, Mahnoor and Halsey, Professor Chris and Manoharan, Dr Anand
Creator Roles:
Mahmood, M.Investigation
Manoharan, A.Investigation
Patterson, S.Investigation
Gammage, P.Funding acquisition, Validation
Halsey, C.Investigation
Ismail, S.Conceptualization, Formal analysis, Supervision, Funding acquisition, Investigation, Visualization, Writing – original draft, Writing – review and editing
Roberts, E.Conceptualization, Formal analysis, Supervision, Funding acquisition, Investigation, Visualization, Project administration, Writing – original draft, Writing – review and editing
Authors: Samarakoon, Y., Yelland, T., Garcia-Gonzalez, E., Justo-Junior, A. d. S., Mahmood, M., Manoharan, A., Patterson, S., Serafin, V., Gammage, P. A., Marmiroli, S., Halsey, C., Ismail, S., and Roberts, E. W.
College/School:College of Medical Veterinary and Life Sciences > School of Cancer Sciences
Journal Name:Life Science Alliance
Publisher:Life Science Alliance
ISSN:2575-1077
ISSN (Online):2575-1077
Published Online:15 January 2025
Copyright Holders:Copyright © 2025 Samarakoon et al.
First Published:First published in Life Science Alliance 8(3):e202403066
Publisher Policy:Reproduced under a Creative Commons license

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Project Code
Award No
Project Name
Principal Investigator
Funder's Name
Funder Ref
Lead Dept
MODELMITO: Manipulating the mitochondrial genome to investigate the im
Payam Gammage
EP/X035581/1
SCS - Beatson Institute for Cancer Research
Identifying drivers of central nervous system involvement in T-cell acute lymphoblastic leukaemia
Christina Halsey
CCLGA 2020 24
MVLS - Research Facilities
Targeting metabolic reprogramming to develop novel strategies for CNS-directed therapy in acute lymphoblastic leukaemia
Christina Halsey
DRCPFA-Nov21\100001
SCS - Translational Pharmacology Lab

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