4.3 Article

The androgen receptor controls expression of the cancer-associated sTn antigen and cell adhesion through induction of ST6GalNAc1 in prostate cancer

期刊

ONCOTARGET
卷 6, 期 33, 页码 34358-34374

出版社

IMPACT JOURNALS LLC
DOI: 10.18632/oncotarget.6024

关键词

androgens; prostate cancer; ST6GalNAc1; glycosylation; Sialyl-Tn (sTn)

资金

  1. Prostate Cancer UK [PG12-34]
  2. J. G. W Patterson Foundation
  3. Wellcome Trust [WT080368MA, WT089225/Z/09/Z]
  4. BBSRC [BB/1006923/1, BB/J007293/1]
  5. Norwegian Research Council
  6. Helse Sor-Ost
  7. University of Oslo through the Centre for Molecular Medicine (Norway)
  8. Oslo University Hospitals
  9. Norwegian Cancer Society
  10. Belfast-Manchester Movember Centre of Excellence [CE013_2-004]
  11. Prostate Cancer UK
  12. Senior Visiting Research Fellowship with Cambridge University through the Department of Oncology
  13. Nordic EMBL (European Molecular Biology Laboratory)
  14. Biotechnology and Biological Sciences Research Council [BB/J007293/1] Funding Source: researchfish
  15. Cancer Research UK [15339, 15151] Funding Source: researchfish
  16. Prostate Cancer UK [PG12-34, PG12-24, S12-018, S13-020] Funding Source: researchfish
  17. BBSRC [BB/J007293/1] Funding Source: UKRI

向作者/读者索取更多资源

Patterns of glycosylation are important in cancer, but the molecular mechanisms that drive changes are often poorly understood. The androgen receptor drives prostate cancer (PCa) development and progression to lethal metastatic castration-resistant disease. Here we used RNA-Seq coupled with bioinformatic analyses of androgen-receptor (AR) binding sites and clinical PCa expression array data to identify ST6GalNAc1 as a direct and rapidly activated target gene of the AR in PCa cells. ST6GalNAc1 encodes a sialytransferase that catalyses formation of the cancer-associated sialyl-Tn antigen (sTn), which we find is also induced by androgen exposure. Androgens induce expression of a novel splice variant of the ST6GalNAc1 protein in PCa cells. This splice variant encodes a shorter protein isoform that is still fully functional as a sialyltransferase and able to induce expression of the sTn-antigen. Surprisingly, given its high expression in tumours, stable expression of ST6GalNAc1 in PCa cells reduced formation of stable tumours in mice, reduced cell adhesion and induced a switch towards a more mesenchymal-like cell phenotype in vitro. ST6GalNAc1 has a dynamic expression pattern in clinical datasets, being significantly up-regulated in primary prostate carcinoma but relatively down-regulated in established metastatic tissue. ST6GalNAc1 is frequently upregulated concurrently with another important glycosylation enzyme GCNT1 previously associated with prostate cancer progression and implicated in Sialyl Lewis X antigen synthesis. Together our data establishes an androgen-dependent mechanism for sTn antigen expression in PCa, and are consistent with a general role for the androgen receptor in driving important coordinate changes to the glycoproteome during PCa progression.

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