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 inHuman pathology Vol. 41; no. 5; pp. 724 - 736
Main Authors Zheng, Hua-chuan, MD, PhD, Xu, Xiao-yan, PhD, Xing, Ya-nan, MD, Wei, Zheng-li, MD, PhD, Takahashi, Hiroyuki, MD, PhD, Masuda, Shinji, MD, PhD, Takano, Yasuo, MD, PhD
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Published New York, NY Elsevier Inc 01.05.2010
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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.
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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Issue 5
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
Language English
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SSID ssj0011545
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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
URI https://www.clinicalkey.es/playcontent/1-s2.0-S0046817709003967
https://dx.doi.org/10.1016/j.humpath.2009.10.017
https://www.ncbi.nlm.nih.gov/pubmed/20096920
https://www.proquest.com/docview/1034900345
Volume 41
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