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α2,6 Sialylation mediated by ST6GAL1 promotes glioblastoma growth
Sajina GC, Kaysaw Tuy, Lucas Rickenbacker, Robert Jones, Asmi Chakraborty, C. Ryan Miller, Elizabeth A. Beierle, Vidya Sagar Hanumanthu, Anh N. Tran, James A. Mobley, Susan L. Bellis, Anita B. Hjelmeland
Sajina GC, Kaysaw Tuy, Lucas Rickenbacker, Robert Jones, Asmi Chakraborty, C. Ryan Miller, Elizabeth A. Beierle, Vidya Sagar Hanumanthu, Anh N. Tran, James A. Mobley, Susan L. Bellis, Anita B. Hjelmeland
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Research Article Cell biology Oncology

α2,6 Sialylation mediated by ST6GAL1 promotes glioblastoma growth

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Abstract

One of the least-investigated areas of brain pathology research is glycosylation, which is a critical regulator of cell surface protein structure and function. β-Galactoside α2,6-sialyltransferase (ST6GAL1) is the primary enzyme that α2,6 sialylates N-glycosylated proteins destined for the plasma membrane or secretion, thereby modulating cell signaling and behavior. We demonstrate a potentially novel, protumorigenic role for α2,6 sialylation and ST6GAL1 in the deadly brain tumor glioblastoma (GBM). GBM cells with high α2,6 sialylation exhibited increased in vitro growth and self-renewal capacity and decreased mouse survival when orthotopically injected. α2,6 Sialylation was regulated by ST6GAL1 in GBM, and ST6GAL1 was elevated in brain tumor-initiating cells (BTICs). Knockdown of ST6GAL1 in BTICs decreased in vitro growth, self-renewal capacity, and tumorigenic potential. ST6GAL1 regulates levels of the known BTIC regulators PDGF Receptor β (PDGFRB), Activated Leukocyte Cell Adhesion Molecule, and Neuropilin, which were confirmed to bind to a lectin-recognizing α2,6 sialic acid. Loss of ST6GAL1 was confirmed to decrease PDGFRB α2,6 sialylation, total protein levels, and the induction of phosphorylation by PDGF-BB. Thus, ST6GAL1-mediated α2,6 sialylation of a select subset of cell surface receptors, including PDGFRB, increases GBM growth.

Authors

Sajina GC, Kaysaw Tuy, Lucas Rickenbacker, Robert Jones, Asmi Chakraborty, C. Ryan Miller, Elizabeth A. Beierle, Vidya Sagar Hanumanthu, Anh N. Tran, James A. Mobley, Susan L. Bellis, Anita B. Hjelmeland

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Figure 4

ST6GAL1 targeting decreases levels of a subset of N-glycoproteins that are known BTIC regulators.

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ST6GAL1 targeting decreases levels of a subset of N-glycoproteins that ...
(A) Schematic of proteomic analysis of D456 BTICs with and without ST6GAL1 KD (n = 4 for each group of shNT, sh32, and sh33). IB with samples independent of the proteomic analysis verified that successful targeting ST6GAL1 resulted in decreased (B) PDGFRB, (C) ALCAM, and (D) NRP1 protein. (E) Schematic of pulldown using SNA-bound Agarose beads. (F) SNA pulldown and protein A/G bound agarose beads as a control demonstrated that PDGFRB, ALCAM, and NRP1 were targets for α2,6 sialylation. (G) SNA pulldown of D456 PDX cells with ST6GAL1 KD compared with NT, illustrating differential pulldown of PDGFRB. (H) PDGF-BB–induced (10 minutes) activation of PDGFRB in D456 GBM PDX cells with ST6GAL1 KD compared with NT; IB for p-PDGFRB and total PDGFRB. The experiments were repeated in at least 3 independent biological replicates. Data from 1 representative experiment are shown.

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