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LGR5 targeting molecules as therapeutic agents for multiple cancer types

Hung-Chang Chen, Nico Mueller, Katherine Stott, Eilidh Rivers, Chrysa Kapeni, View ORCID ProfileCarolin M Sauer, Flavio Beke, Stephen Walsh, Nicola Ashman, Louise O’Brien, Amir Rafati Fard, Arman Godsinia, Fadwa Joud, Olivier Giger, Inti Zlobec, View ORCID ProfileIoana Olan, Sarah J. Aitken, Matthew Hoare, Richard Mair, Eva Serrao, View ORCID ProfileJames D Brenton, Alicia Garcia-Gimenez, Simon E. Richardson, View ORCID ProfileBrian Huntly, David R. Spring, Mikkel-Ole Skjødt, Karsten Skjødt, View ORCID ProfileMarc de la Roche, Maike de la Roche
doi: https://doi.org/10.1101/2022.09.01.506182
Hung-Chang Chen
1University of Cambridge, Cancer Research UK Cambridge Institute; Robinson Way, Cambridge CB2 0RE, UK
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Nico Mueller
1University of Cambridge, Cancer Research UK Cambridge Institute; Robinson Way, Cambridge CB2 0RE, UK
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Katherine Stott
2University of Cambridge, Department of Biochemistry; Tennis Court Road, Cambridge CB2 1QW, UK
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Eilidh Rivers
2University of Cambridge, Department of Biochemistry; Tennis Court Road, Cambridge CB2 1QW, UK
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Chrysa Kapeni
1University of Cambridge, Cancer Research UK Cambridge Institute; Robinson Way, Cambridge CB2 0RE, UK
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Carolin M Sauer
1University of Cambridge, Cancer Research UK Cambridge Institute; Robinson Way, Cambridge CB2 0RE, UK
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  • ORCID record for Carolin M Sauer
Flavio Beke
1University of Cambridge, Cancer Research UK Cambridge Institute; Robinson Way, Cambridge CB2 0RE, UK
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Stephen Walsh
3University of Cambridge, Yusuf Hamied Department of Chemistry; Lensfield Road, Cambridge, CB2 1EW, UK
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Nicola Ashman
3University of Cambridge, Yusuf Hamied Department of Chemistry; Lensfield Road, Cambridge, CB2 1EW, UK
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Louise O’Brien
1University of Cambridge, Cancer Research UK Cambridge Institute; Robinson Way, Cambridge CB2 0RE, UK
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Amir Rafati Fard
2University of Cambridge, Department of Biochemistry; Tennis Court Road, Cambridge CB2 1QW, UK
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Arman Godsinia
2University of Cambridge, Department of Biochemistry; Tennis Court Road, Cambridge CB2 1QW, UK
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Fadwa Joud
1University of Cambridge, Cancer Research UK Cambridge Institute; Robinson Way, Cambridge CB2 0RE, UK
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Olivier Giger
4University of Cambridge, Department of Pathology; Tennis Court Road, Cambridge CB2 1QP, UK
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Inti Zlobec
5Institute of Pathology, University of Bern; Murtenstrasse 31, CH-3008 Bern Switzerland
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Ioana Olan
1University of Cambridge, Cancer Research UK Cambridge Institute; Robinson Way, Cambridge CB2 0RE, UK
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Sarah J. Aitken
6University of Cambridge, MRC Toxicology Unit; Tennis Court Road, Cambridge CB2 1QR, UK
7Department of Histopathology, Cambridge University Hospitals, NHS Foundation Trust; Main Drive, Cambridge, CB2 0QQ, UK
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Matthew Hoare
1University of Cambridge, Cancer Research UK Cambridge Institute; Robinson Way, Cambridge CB2 0RE, UK
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Richard Mair
1University of Cambridge, Cancer Research UK Cambridge Institute; Robinson Way, Cambridge CB2 0RE, UK
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Eva Serrao
1University of Cambridge, Cancer Research UK Cambridge Institute; Robinson Way, Cambridge CB2 0RE, UK
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James D Brenton
1University of Cambridge, Cancer Research UK Cambridge Institute; Robinson Way, Cambridge CB2 0RE, UK
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Alicia Garcia-Gimenez
8University of Cambridge, Department of Haematology; Puddicombe Way, Cambridge CB2 0AW, UK
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Simon E. Richardson
8University of Cambridge, Department of Haematology; Puddicombe Way, Cambridge CB2 0AW, UK
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Brian Huntly
8University of Cambridge, Department of Haematology; Puddicombe Way, Cambridge CB2 0AW, UK
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David R. Spring
3University of Cambridge, Yusuf Hamied Department of Chemistry; Lensfield Road, Cambridge, CB2 1EW, UK
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Mikkel-Ole Skjødt
9Rigshospitalet - University Hospital Copenhagen; Blegdamsvej 9, 2100 Copenhagen, Denmark
10Institute of Immunology and Microbiology, University of Copenhagen; Blegdamsvej 3B, 2200 Copenhagen, Denmark
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Karsten Skjødt
11University of Southern Denmark; J.B. Winslows Vej, 5000 Odense C, Denmark
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Marc de la Roche
2University of Cambridge, Department of Biochemistry; Tennis Court Road, Cambridge CB2 1QW, UK
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  • For correspondence: maike.delaroche@cruk.cam.ac.uk mad58@cam.ac.uk
Maike de la Roche
1University of Cambridge, Cancer Research UK Cambridge Institute; Robinson Way, Cambridge CB2 0RE, UK
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  • For correspondence: maike.delaroche@cruk.cam.ac.uk mad58@cam.ac.uk
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Abstract

Leucine-rich repeat-containing G-protein receptor 5 (LGR5) has been characterised as a stem cell and cancer stem cell marker. Previous analyses of LGR5 transcript levels indicate high level expression discriminates malignancies such as colorectal cancer (CRC) and pre-B acute lymphoblastic leukaemia (pre-B ALL) from healthy tissues suggesting LGR5 protein expression may provide a molecular handle for prognosis and treatment.

We have developed highly specific, high affinity antibodies to the extracellular domain of human LGR5 (α-LGR5) that detect high LGR5 protein levels in colorectal cancer (CRC), hepatocellular carcinoma (HCC), and pre-B ALL. In contrast, there is low to undetectable levels of LGR5 protein in normal colon and rectal epithelia, liver, ovarian tissues, brain and immune cell types.

LGR5 is rapidly internalised from the plasma membrane and trafficked to intracellular vesicular compartments including lysosomes. Treatment of high LGR5-expressing CRC and pre-B ALL cancer cell lines with an antibody-drug conjugate version of α-LGR5 (α-LGR5-ADC) lead to effective cell killing at nanomolar concentrations. Interventional treatment of pre-B ALL tumours with α-LGR5-ADC in vivo led to rapid tumour attrition. We further demonstrated the therapeutic utility of humanised α-LGR5 by using the corresponding scFv fragment for the generation of α-LGR5 chimeric antigen receptors (CARs) and a Bispecific T cell Engager (BiTE). α-LGR5-CAR-NK cells were effective at killing LGR5-expressing cells while α-LGR5/α-CD3 BiTEs induce T cell activation and killing of NALM6 cells by cytotoxic CD8+ T cells.

Taken together, this study establishes α-LGR5-based therapeutic modalities that effectively discriminate and target CRC, HCC and pre-B ALL tumour cells.

One Sentence Summary We generated novel antibodies against the cancer cell marker LGR5, validated diagnostic use in prioritizing specific cancer types for targeting, and developed antibody-based therapeutics.

Competing Interest Statement

Authors declare that they have no competing interests. A patent application has been filed (Therapeutic Antibodies, GB2202990.4). Inventors are Maike and Marc de la Roche.

Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY-NC-ND 4.0 International license.
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Posted September 02, 2022.
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LGR5 targeting molecules as therapeutic agents for multiple cancer types
Hung-Chang Chen, Nico Mueller, Katherine Stott, Eilidh Rivers, Chrysa Kapeni, Carolin M Sauer, Flavio Beke, Stephen Walsh, Nicola Ashman, Louise O’Brien, Amir Rafati Fard, Arman Godsinia, Fadwa Joud, Olivier Giger, Inti Zlobec, Ioana Olan, Sarah J. Aitken, Matthew Hoare, Richard Mair, Eva Serrao, James D Brenton, Alicia Garcia-Gimenez, Simon E. Richardson, Brian Huntly, David R. Spring, Mikkel-Ole Skjødt, Karsten Skjødt, Marc de la Roche, Maike de la Roche
bioRxiv 2022.09.01.506182; doi: https://doi.org/10.1101/2022.09.01.506182
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LGR5 targeting molecules as therapeutic agents for multiple cancer types
Hung-Chang Chen, Nico Mueller, Katherine Stott, Eilidh Rivers, Chrysa Kapeni, Carolin M Sauer, Flavio Beke, Stephen Walsh, Nicola Ashman, Louise O’Brien, Amir Rafati Fard, Arman Godsinia, Fadwa Joud, Olivier Giger, Inti Zlobec, Ioana Olan, Sarah J. Aitken, Matthew Hoare, Richard Mair, Eva Serrao, James D Brenton, Alicia Garcia-Gimenez, Simon E. Richardson, Brian Huntly, David R. Spring, Mikkel-Ole Skjødt, Karsten Skjødt, Marc de la Roche, Maike de la Roche
bioRxiv 2022.09.01.506182; doi: https://doi.org/10.1101/2022.09.01.506182

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