| Literature DB >> 12232759 |
H Dosaka-Akita1, I Kinoshita, K Yamazaki, H Izumi, T Itoh, H Katoh, M Nishimura, K Matsuo, Y Yamada, K Kohno.
Abstract
N-acetylgalactosaminyl transferase-3 (GalNAc-T3) is an enzyme involved in the initial glycosylation of mucin-type O-linked proteins. In the present study, we used immunohistochemistry to examine GalNAc-T3 expression in 215 surgically resected non-small cell lung cancers. We analysed the biological and clinical importance of GalNAc-T3 expression, especially with regard to its potential as a prognostic factor. We found that normal bronchial epithelial cells, bronchial gland cells, and alveolar pneumocytes showed cytoplasmic immunostaining for GalNAc-T3. Low expression of GalNAc-T3, observed in 93 of 215 tumours (43.4%), was found more frequently in tumours from smokers than those from nonsmokers (P=0.001), in squamous cell carcinomas than nonsquamous cell carcinomas (P<0.0001), and in moderately and poorly differentiated tumours than well differentiated tumours (P=0.0002). Multivariate logistic regression analysis showed that an association of low GalNAc-T3 expression with squamous cell carcinomas was the only one significant relationship of GalNAc-T3 expression with various factors (P<0.0001). Moreover, tumours losing GalNAc-T3 expression had a significantly higher Ki-67 labelling index than tumours retaining GalNAc-T3 expression (P=0.0003). Patients with low GalNAc-T3 expression survived a significantly shorter time than patients with high GalNAc-T3 expression in 103 pStage I non-small cell lung cancers (5-year survival rates, 58% and 78%, respectively; P=0.02 by log-rank test) as well as in 61 pStage I nonsquamous cell carcinomas (5-year survival rates, 63% and 85%, respectively; P=0.03). Low GalNAc-T3 expression was an unfavourable prognostic factor in pStage I non-small cell lung cancers (hazards ratio, 2.04; P=0.03), and in pStage I nonsquamous cell carcinomas (hazards ratio, 2.70; P=0.03). These results suggest that GalNAc-T3 is a new marker of non-small cell lung cancers with specificity for histology and prognosis.Entities:
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Year: 2002 PMID: 12232759 PMCID: PMC2364253 DOI: 10.1038/sj.bjc.6600536
Source DB: PubMed Journal: Br J Cancer ISSN: 0007-0920 Impact factor: 7.640
Figure 1Western blotting of GST fusion protein. GST (100 ng) and GST-GalNAcT3N (200 ng) proteins were loaded on a 12% SDS–PAGE gel and transferred to membrane. Immunoblot analysis was performed with an anti-GalNAcT3 antibody (left) and anti-GST antibody (right). IB, immunoblotting.
Figure 2Immunoreactivity of an anti-GalNAc-T3 polyclonal antibody. Immunostaining was performed with this antibody in a NSCLC specimen after incubation of this antibody with excess of GST (A) or GST-GalNAcT3N (B). Scale bar=20 μm.
Figure 3Immunohistochemical staining patterns for GalNAc-T3. Normal bronchial epithelial cells (A) and bronchial gland cells (B) showed GalNAc-T3 expression. GalNAc-T3 expression was found diffusely in the cytoplasm of tumour cells or localised in the Golgi apparatus in an adenocarcinoma (C), but not seen in a squamous cell carcinoma (D). Scale bar=20 μm.
Relationship between GalNAc-T3 expression and clinical and clinicopathological characteristics in 215 surgically resected NSCLCs
Multivariate logistic regression analysis for the correlation between GalNAc-T3 expression and various characteristics
Relationship between GalNAc-T3 expression and Ki-67 cell growth fractions in NSCLCs
Figure 4Kaplan–Meier survival curves of patients with pStage I NSCLCs stratified by GalNAc-T3 expression. Survival curves of patients with overall NSCLCs (A) and with nonsquamous cell carcinomas (B) are stratified by low and high GalNAc-T3 expression. Nonsquamous cell carcinoma included adenocarcinoma, large cell carcinoma and adenosquamous cell carcinoma.
Cox's proportional hazards model analysis of prognostic factors in patients with pStage I NSCLCsA Overall NSCLCs