N-Glycomic Profiling of Microsatellite Unstable Colorectal Cancer

Author:

Ukkola Iiris12,Nummela Pirjo12ORCID,Heiskanen Annamari3,Holm Matilda1245ORCID,Zafar Sadia12,Kero Mia1,Haglund Caj45ORCID,Satomaa Tero3ORCID,Kytölä Soili6,Ristimäki Ari12

Affiliation:

1. HUSLAB, Department of Pathology, HUS Diagnostic Center, Helsinki University Hospital and University of Helsinki, 00029 Helsinki, Finland

2. Applied Tumor Genomics Research Program, Research Programs Unit, Helsinki University Hospital and University of Helsinki, 00014 Helsinki, Finland

3. Glykos Finland Co., Ltd., 00790 Helsinki, Finland

4. Translational Cancer Medicine Research Program, Faculty of Medicine, University of Helsinki, 00014 Helsinki, Finland

5. Department of Surgery, Helsinki University Hospital and University of Helsinki, 00029 Helsinki, Finland

6. HUSLAB, Department of Genetics, HUS Diagnostic Center, Helsinki University Hospital and University of Helsinki, 00029 Helsinki, Finland

Abstract

Aberrant glycosylation affects cancer progression and immune evasion. Approximately 15% of colorectal cancers (CRCs) demonstrate microsatellite instability (MSI) and display major differences in outcomes and therapeutic responses, as compared to corresponding microsatellite stable (MSS) tumors. We compared the N-glycan profiles of stage II and IV MSI CRC tumors, further subdivided into BRAFV600E wild-type and mutated subgroups (n = 10 in each subgroup), with each other and with those of paired non-neoplastic mucosal samples using mass spectrometry. Further, the N-glycans of BRAFV600E wild-type stage II MSI tumors were compared to corresponding MSS tumors (n = 9). Multiple differences in N-glycan profiles were identified between the MSI CRCs and control tissues, as well as between the stage II MSI and MSS samples. The MSI CRC tumors showed a lower relative abundance of high-mannose N-glycans than did the control tissues or the MSS CRCs. Among MSI CRC subgroups, acidic N-glycans showed tumor stage and BRAF mutation status-dependent variation. Specifically, the large, sulfated/phosphorylated, and putative terminal N-acetylhexosamine-containing acidic N-glycans differed between the MSI CRC subgroups, showing opposite changes in stages II and IV, when comparing BRAF mutated and wild-type tumors. Our results show that molecular subgroups of CRC exhibit characteristic glycan profiles that may explain certain carcinogenic properties of MSI tumors.

Funder

Cancer Society of Finland

Finska Läkaresällskapet

Helsinki University Central Hospital Research Funds

Medicinska Understödsföreningen Liv & Hälsa

Orion Research Foundation sr [I.U.]

Ida Montin Foundation [I.U.]

Sigrid Jusélius Foundation

University of Helsinki

Publisher

MDPI AG

Subject

Cancer Research,Oncology

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