Nuclear or cytoplasmic localization of Bag-1 distinctly correlates with pathologic behavior and outcome of gastric carcinomas
Summary Bag-1 is an antiapoptotic protein with its altered expression and localization in malignancies. To clarify the role of Bag-1 in gastric carcinogenesis, its expression was examined by immunohistochemistry and in situ hybridization on a tissue microarray containing gastric carcinomas, adjacent...
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Published in | Human pathology Vol. 41; no. 5; pp. 724 - 736 |
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Abstract | Summary Bag-1 is an antiapoptotic protein with its altered expression and localization in malignancies. To clarify the role of Bag-1 in gastric carcinogenesis, its expression was examined by immunohistochemistry and in situ hybridization on a tissue microarray containing gastric carcinomas, adjacent nonneoplastic mucosa (NNM), adenomas, intestinal metaplasia (IM), or gastritis. Gastric carcinoma tissue and cell lines were studied for Bag-1 expression by Western blot and reverse transcriptase-polymerase chain reaction (RT-PCR). The results demonstrated that Bag-1 proteins were differentially expressed in the nucleus or cytosol of MKN28, AGS, MKN45, KATO-III, or HGC-27 cell lines, despite similar levels of messenger RNA (mRNA) expression. The Bag-1 mRNA overexpression was detectable in 73.3% of 15 gastric carcinomas without significant difference in its encoding products' levels. The nuclear Bag-1 expression gradually decreased from gastritis, IM, adenoma to carcinoma ( P < .05), and negatively correlated with lymphatic invasion or lymph node metastasis, cytoplasmic Bag-1 expression, negative parafibromin expression, and poor prognosis ( P < .05). Cytoplasmic Bag-1 was weakly immunoreactive in carcinomas, compared with gastritis ( P < .05), and positively associated with invasive depth and poor prognosis of the carcinoma ( P < .05). The positive rate of Bag-1 mRNA expression was higher in adjacent IMs than carcinomas or adjacent NNM ( P < .05). Bag-1 mRNA was expressed more in carcinomas from female patients than the male counterparts ( P < .05). There was a positive correlation of Bag-1 mRNA expression with invasive depth and venous invasion ( P < .05). Our study indicated that aberrant expression and subcellular distribution of Bag-1 might play an important role in the malignant transformation of gastric epithelial cells and should be considered as a biomarker for gastric carcinogenesis, subsequent progression, and prognosis. |
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AbstractList | Summary Bag-1 is an antiapoptotic protein with its altered expression and localization in malignancies. To clarify the role of Bag-1 in gastric carcinogenesis, its expression was examined by immunohistochemistry and in situ hybridization on a tissue microarray containing gastric carcinomas, adjacent nonneoplastic mucosa (NNM), adenomas, intestinal metaplasia (IM), or gastritis. Gastric carcinoma tissue and cell lines were studied for Bag-1 expression by Western blot and reverse transcriptase-polymerase chain reaction (RT-PCR). The results demonstrated that Bag-1 proteins were differentially expressed in the nucleus or cytosol of MKN28, AGS, MKN45, KATO-III, or HGC-27 cell lines, despite similar levels of messenger RNA (mRNA) expression. The Bag-1 mRNA overexpression was detectable in 73.3% of 15 gastric carcinomas without significant difference in its encoding products' levels. The nuclear Bag-1 expression gradually decreased from gastritis, IM, adenoma to carcinoma ( P < .05), and negatively correlated with lymphatic invasion or lymph node metastasis, cytoplasmic Bag-1 expression, negative parafibromin expression, and poor prognosis ( P < .05). Cytoplasmic Bag-1 was weakly immunoreactive in carcinomas, compared with gastritis ( P < .05), and positively associated with invasive depth and poor prognosis of the carcinoma ( P < .05). The positive rate of Bag-1 mRNA expression was higher in adjacent IMs than carcinomas or adjacent NNM ( P < .05). Bag-1 mRNA was expressed more in carcinomas from female patients than the male counterparts ( P < .05). There was a positive correlation of Bag-1 mRNA expression with invasive depth and venous invasion ( P < .05). Our study indicated that aberrant expression and subcellular distribution of Bag-1 might play an important role in the malignant transformation of gastric epithelial cells and should be considered as a biomarker for gastric carcinogenesis, subsequent progression, and prognosis. Bag-1 is an antiapoptotic protein with its altered expression and localization in malignancies. To clarify the role of Bag-1 in gastric carcinogenesis, its expression was examined by immunohistochemistry and in situ hybridization on a tissue microarray containing gastric carcinomas, adjacent nonneoplastic mucosa (NNM), adenomas, intestinal metaplasia (IM), or gastritis. Gastric carcinoma tissue and cell lines were studied for Bag-1 expression by Western blot and reverse transcriptase-polymerase chain reaction (RT-PCR). The results demonstrated that Bag-1 proteins were differentially expressed in the nucleus or cytosol of MKN28, AGS, MKN45, KATO-III, or HGC-27 cell lines, despite similar levels of messenger RNA (mRNA) expression. The Bag-1 mRNA overexpression was detectable in 73.3% of 15 gastric carcinomas without significant difference in its encoding products' levels. The nuclear Bag-1 expression gradually decreased from gastritis, IM, adenoma to carcinoma ( P < .05), and negatively correlated with lymphatic invasion or lymph node metastasis, cytoplasmic Bag-1 expression, negative parafibromin expression, and poor prognosis ( P < .05). Cytoplasmic Bag-1 was weakly immunoreactive in carcinomas, compared with gastritis ( P < .05), and positively associated with invasive depth and poor prognosis of the carcinoma ( P < .05). The positive rate of Bag-1 mRNA expression was higher in adjacent IMs than carcinomas or adjacent NNM ( P < .05). Bag-1 mRNA was expressed more in carcinomas from female patients than the male counterparts ( P < .05). There was a positive correlation of Bag-1 mRNA expression with invasive depth and venous invasion ( P < .05). Our study indicated that aberrant expression and subcellular distribution of Bag-1 might play an important role in the malignant transformation of gastric epithelial cells and should be considered as a biomarker for gastric carcinogenesis, subsequent progression, and prognosis. Bag-1 is an antiapoptotic protein with its altered expression and localization in malignancies. To clarify the role of Bag-1 in gastric carcinogenesis, its expression was examined by immunohistochemistry and in situ hybridization on a tissue microarray containing gastric carcinomas, adjacent nonneoplastic mucosa (NNM), adenomas, intestinal metaplasia (IM), or gastritis. Gastric carcinoma tissue and cell lines were studied for Bag-1 expression by Western blot and reverse transcriptase-polymerase chain reaction (RT-PCR). The results demonstrated that Bag-1 proteins were differentially expressed in the nucleus or cytosol of MKN28, AGS, MKN45, KATO-III, or HGC-27 cell lines, despite similar levels of messenger RNA (mRNA) expression. The Bag-1 mRNA overexpression was detectable in 73.3% of 15 gastric carcinomas without significant difference in its encoding products' levels. The nuclear Bag-1 expression gradually decreased from gastritis, IM, adenoma to carcinoma (P < .05), and negatively correlated with lymphatic invasion or lymph node metastasis, cytoplasmic Bag-1 expression, negative parafibromin expression, and poor prognosis (P < .05). Cytoplasmic Bag-1 was weakly immunoreactive in carcinomas, compared with gastritis (P < .05), and positively associated with invasive depth and poor prognosis of the carcinoma (P < .05). The positive rate of Bag-1 mRNA expression was higher in adjacent IMs than carcinomas or adjacent NNM (P < .05). Bag-1 mRNA was expressed more in carcinomas from female patients than the male counterparts (P < .05). There was a positive correlation of Bag-1 mRNA expression with invasive depth and venous invasion (P < .05). Our study indicated that aberrant expression and subcellular distribution of Bag-1 might play an important role in the malignant transformation of gastric epithelial cells and should be considered as a biomarker for gastric carcinogenesis, subsequent progression, and prognosis. |
Author | Xu, Xiao-yan, PhD Wei, Zheng-li, MD, PhD Xing, Ya-nan, MD Takano, Yasuo, MD, PhD Masuda, Shinji, MD, PhD Zheng, Hua-chuan, MD, PhD Takahashi, Hiroyuki, MD, PhD |
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Keywords | Gastric carcinoma Bag-1 Prognosis Pathobiologic behavior Bag Malignant tumor Stomach cancer Stomach carcinoma Anatomic pathology Digestive diseases Evolution Behavior Localization Cytoplasm Cancer Gastric disease |
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Snippet | Summary Bag-1 is an antiapoptotic protein with its altered expression and localization in malignancies. To clarify the role of Bag-1 in gastric carcinogenesis,... Bag-1 is an antiapoptotic protein with its altered expression and localization in malignancies. To clarify the role of Bag-1 in gastric carcinogenesis, its... Bag-1 is an antiapoptotic protein with its altered expression and localization in malignancies. To clarify the role of Bag-1 in gastric carcinogenesis, its... |
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SubjectTerms | Adenoma - genetics Adenoma - metabolism Adenoma - pathology Apoptosis Bag-1 Behavior Biological and medical sciences Biomarkers, Tumor - metabolism Blotting, Western Carcinoma - genetics Carcinoma - metabolism Carcinoma - pathology Cell cycle Cell Line Cell Nucleus - metabolism Cell Nucleus - pathology Cells, Cultured Cytoplasm - metabolism Cytoplasm - pathology Disease Progression DNA-Binding Proteins - genetics DNA-Binding Proteins - metabolism Female Gastric carcinoma Gastritis - genetics Gastritis - metabolism Gastritis - pathology Gastroenterology. Liver. Pancreas. Abdomen Humans Immunohistochemistry Investigative techniques, diagnostic techniques (general aspects) Kaplan-Meier Estimate Kinases Male Medical sciences Metaplasia - genetics Metaplasia - metabolism Metaplasia - pathology Multivariate analysis Pathobiologic behavior Pathology Pathology. Cytology. Biochemistry. Spectrometry. Miscellaneous investigative techniques Prognosis Proportional Hazards Models Proteins Reverse Transcriptase Polymerase Chain Reaction RNA polymerase RNA, Messenger - genetics RNA, Messenger - metabolism Rodents Stomach Neoplasms - genetics Stomach Neoplasms - metabolism Stomach Neoplasms - pathology Stomach. Duodenum. Small intestine. Colon. Rectum. Anus Transcription Factors - genetics Transcription Factors - metabolism Tumors |
Title | Nuclear or cytoplasmic localization of Bag-1 distinctly correlates with pathologic behavior and outcome of gastric carcinomas |
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