| Literature DB >> 32205858 |
Laura C Hautala1, Poh-Choo Pang2, Aristotelis Antonopoulos2, Annukka Pasanen3, Cheuk-Lun Lee4, Philip C N Chiu4, William S B Yeung4, Mikko Loukovaara5, Ralf Bützow3,5, Stuart M Haslam2, Anne Dell2, Hannu Koistinen6.
Abstract
Glycodelin is a major glycoprotein expressed in reproductive tissues, like secretory and decidualized endometrium. It has several reproduction related functions that are dependent on specific glycosylation, but it has also been found to drive differentiation of endometrial carcinoma cells toward a less malignant phenotype. Here we aimed to elucidate whether the glycosylation and function of glycodelin is altered in endometrial carcinoma as compared with a normal endometrium. We carried out glycan structure analysis of glycodelin expressed in HEC-1B human endometrial carcinoma cells (HEC-1B Gd) by mass spectrometry glycomics strategies. Glycans of HEC-1B Gd were found to comprise a typical mixture of high-mannose, hybrid, and complex-type N-glycans, often containing undecorated LacNAc (Galβ1-4GlcNAc) antennae. However, several differences, as compared with previously reported glycan structures of normal human decidualized endometrium-derived glycodelin isoform, glycodelin-A (GdA), were also found. These included a lower level of sialylation and more abundant poly-LacNAc antennae, some of which are fucosylated. This allowed us to select lectins that showed different binding to these classes of glycodelin. Despite the differences in glycosylation between HEC-1B Gd and GdA, both showed similar inhibitory activity on trophoblast cell invasion and peripheral blood mononuclear cell proliferation. For the detection of cancer associated glycodelin, we established a novel in situ proximity-ligation based histochemical staining method using a specific glycodelin antibody and UEAI lectin. We found that the UEAI reactive glycodelin was abundant in endometrial carcinoma, but virtually absent in normal endometrial tissue even when glycodelin was strongly expressed. In conclusion, we established a histochemical staining method for the detection of endometrial carcinoma-associated glycodelin and showed that this specific glycodelin is exclusively expressed in cancer, not in normal endometrium. Similar methods can be used for studies of other glycoproteins.Entities:
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Year: 2020 PMID: 32205858 PMCID: PMC7312397 DOI: 10.1038/s41374-020-0411-x
Source DB: PubMed Journal: Lab Invest ISSN: 0023-6837 Impact factor: 5.662
Lectin-immunoassay results.
| Lectina | Abbreviation | Reaction withb | Specificityc | |
|---|---|---|---|---|
| GdA | HEC-1B Gd | |||
| SNA | +++ | − | Neu5Acα6Gal/GalNAc | |
| ECL | − | +++ | Galβ4GlcNAc | |
| UEAI | − | +++ | αFuc | |
| Concanavalin A | Con-A | + | +++ | αMan, αGlc |
| PSA | + | + | αMan, αGlc | |
| LCA | + | +++ | αMan, αGlc | |
| RCA I | + | + | Gal | |
| GSL II | − | − | αGal | |
| GSL I | − | − | αGal, αGalNAc | |
| DBA | − | − | αGalNAc | |
| Soybean | SBA | + | +++ | α > βGalNAc |
| SJA | − | − | βGalNAc | |
| VVA | − | − | GalNAc | |
| WFA | + | ++ | GalNAc | |
| Wheat Germ | WGA | + | ++ | GlcNAc |
| Succinylated Wheat Germ | WGAsucc | + | +++ | GlcNAc |
| DSL | − | − | (GlcNAc)2–4 | |
| LEL | − | − | (GlcNAc)2–4 | |
| STL | + | + | (GlcNAc)2–4 | |
| Peanut | PNA | − | − | Galβ3GalNAc |
| Jacalin | Jacalin | − | − | Galβ3GalNAc |
| PHA-E | − | − | Galβ4GlcNAcβ2Manα6 (GlcNAcβ4) (GlcNAcβ4Manα3) Manβ4 | |
| PHA-L | + | + | Galβ4GlcNAcβ6(GlcNAc β2Manα3)Manα3 | |
aLectin from Wisteria floribunda (WFA, L-1516) was obtained from Sigma. Other lectins were from Vector Laboratories as Biotinylated Lectin Kits I, II, and III.
b−, no reactivity (signal <1.5-fold of that of blank, i.e., signal obtained with biotinylated lectin and labeled antibody without GdA or HEC-1B Gd); +, positive signal (>1.5-fold blank); ++, >2- and <4-fold difference between the reactivity with GdA and HEC-1B Gd (after deduction of blank value); +++, >4-fold difference between the reactivity with GdA and HEC-1B Gd. The relative reactivity between different lectins cannot be deduced from the table.
cSpecificity is based on the manufacturer’s (Vector Laboratories) information.
dHigh background signal (perhaps due to direct binding of the detection antibody to the lectin).
Clinicopathological data in relation to glycodelin (Gd), UEAI lectin (UEAI) and UEAI-glycodelin (UEAI-Gd) staining.
| Gd pos. | UEAI pos. | UEAI-Gd pos | ||
|---|---|---|---|---|
| 75 (100) | 22 (29) | 57 (77) | 36 (48) | |
| Grade | ||||
| 1–2 | 65 (87) | 21 (32) | 51 (78) | 33 (51) |
| 3 | 10 (13) | 1 (10) | 6 (67) | 3 (30) |
| | ||||
| Stage | ||||
| I | 62 (83) | 18 (29) | 48 (79) | 29 (47) |
| II–IV | 13 (17) | 4 (31) | 9 (69) | 7 (54) |
| | ||||
| Tumor sizef | ||||
| Diameter < 2 cm | 22 (30) | 7 (32) | 16 (73) | 11 (50) |
| Diameter ≥ 2 cm | 51 (70) | 14 (27) | 39 (78) | 24 (47) |
| | ||||
| LVIf | ||||
| Yes | 17 (24) | 6 (35) | 12 (71) | 7 (41) |
| No | 55 (76) | 15 (27) | 43 (80) | 27 (49) |
| | ||||
| 52 (100) | 6 (12) | 17 (34) | 1 (2) | |
| |
aThe mean ± SD age of patients was 65.7 ± 11.3 years (range 37–92 years) and for controls 57.9 ± 6.9 years (range 38–77).
bNumber of samples in each category and in parenthesis percent.
cNumber and in parenthesis percent of positively stained samples in each category.
dIn UEAI staining one endometrioid carcinoma (grade 3, stage I, diameter ≥ 2 cm and no LVI) and two control samples were missing.
ep values (Fisher’s exact test, two-sided) between frequency of positively stained samples in different subgroups or between carcinoma and normal endometrium.
fTumor size or lymphovascular invasion (LVI) were not available from 2 or 3 patients, respectively.
Fig. 1Glycomics analysis of glycodelin expressed by HEC-1B cells (HEC-1B Gd).
a MALDI-TOF mass spectra of permethylated N-glycans from HEC-1B Gd. “new” above particular structure, or next to a m/z value, indicates new structure or a set of structures when compared with the N-glycome of GdA analyzed before [5]. All signals observed are singly charged sodiated ions [M + Na]+, and their structural assignment is based on monosaccharide composition, MS/MS fragmentation analyses (boxed m/z values) and knowledge of the glycan biosynthetic pathways. Fully annotated spectra that have been expanded on the m/z axis to enable all components to be visualized, are presented in Supplementary Fig. Sugars shown on top of a bracket have not had their antenna location unequivocally defined. For simplicity, one branching pattern for tri-antennary structures is shown. Therefore, the position of an antenna in a cartoon does not imply designation of a specific arm. “M”, “m” and “vm” designations indicate major, minor and very minor abundances, respectively. b, c Evidence for LacNAc extension of N-glycans. MALDI-TOF/TOF MS/MS of the molecular ion at (b) m/z 3591 and (c) 4215 as detected on the MALDI-TOF MS spectrum (see a). The fragment ions are consistent with the sequences shown in corresponding insets (major abundance structures). The horizontal arrows on the spectra indicate losses of glycan moieties from the molecular ion. c The fucose residues outside the bracket have not had their location unequivocally defined.
Fig. 2Biological activity of HEC-1B Gd and GdA.
a Trophoblast invasion assays were performed using primary trophoblasts (n = 3) and JEG-3 choriocarcinoma cells (n = 6). b Peripheral blood mononuclear cell (PBMC) viability was evaluated by XTT assay (n = 4). *p < 0.05 or **p < 0.01 vs. control (T-test). Data represent mean ± SE.
Fig. 3Histochemical staining of glycodelin, UEAI lectin–reactive glycodelin (UEAI–glycodelin) and UEAI–binding glycans in normal endometrium and endometrial carcinoma tissues.
Example of glycodelin staining in a whole tissue section (b), which has both cancerous region (c) and normal secretory endometrium (a). Insert in a is a negative control in which the glycodelin antibody has been replaced with preimmune IgG. Representative examples of strong glycodelin staining (with antibody) (d, g), UEAI–glycodelin staining (proximity-ligation based detection with glycodelin antibody and UEAI lectin) (e, h) and staining of UEAI lectin-reactive glycans (UEAI lectin staining) (f, i) in normal endometrium (d–f) and endometrial carcinoma (g–i) TMA samples. Scale in a is 100 µm and the same scale applies to c–i. Scale in b is 200 µm.