1.Cloning, expressing and characterizing of a phosphoglycerate mutase gene of Schistosoma japonncum.
Yan ZHOU ; Jiaojiao LIN ; Lixiao YAO ; Xinzhi WANG ; Yaojun SHI ; Ke LU ; JinMing LIU ; Zhiqiang FU ; Lihong TAO
Chinese Journal of Biotechnology 2008;24(9):1550-1555
Phosphoglycerate mutase (PGAM) is a key enzyme in glycolytic pathways. With PCR technique based on an EST identified in our lab, a novel gene named SjPGAM (GenBank Accession No. EU374631) was cloned. Sequence analysis revealed that the ORF of SjPGAM gene contained 753 nucleotides, encoding 250 amino acids, and the molecular weight was about 28.26 kD. Real-time PCR analysis showed that the mRNA level of SjPGAM was much higher in the 14 days and 19 days schistosomula than other stages, suggesting that the gene was a schistosomula stage differential expression gene. The SjPGAM cDNA fragment was subcloned into an expression vector pET-28a (+) and transformed into Escherichia coli BL21 cells. In the presence of IPTG, the 31 kD fusion protein was expressed in included bodies. Western blotting revealed that the fusion protein could be recognized by the rabbit serum anti-Schistosoma japonicum adult worm antigen preparation. The study provides important basis for investigating the mechanism of the PGAM in the glycolytic pathways of Schistosoma japonnicum.
Animals
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Cloning, Molecular
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Escherichia coli
;
genetics
;
metabolism
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Male
;
Phosphoglycerate Mutase
;
genetics
;
immunology
;
RNA, Messenger
;
genetics
;
metabolism
;
Rabbits
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Recombinant Proteins
;
genetics
;
metabolism
;
Schistosoma japonicum
;
enzymology
;
genetics
;
Schistosomiasis japonica
;
immunology
;
parasitology
2.Phosphoglycerate mutase 1 knockdown inhibits prostate cancer cell growth, migration, and invasion.
Yao-An WEN ; Bo-Wei ZHOU ; Dao-Jun LV ; Fang-Peng SHU ; Xian-Lu SONG ; Bin HUANG ; Chong WANG ; Shan-Chao ZHAO
Asian Journal of Andrology 2018;20(2):178-183
Phosphoglycerate mutase 1 (PGAM1) is upregulated in many cancer types and involved in cell proliferation, migration, invasion, and apoptosis. However, the relationship between PGAM1 and prostate cancer is poorly understood. The present study investigated the changes in PGAM1 expression in prostate cancer tissues compared with normal prostate tissues and examined the cellular function of PGAM1 and its relationship with clinicopathological variables. Immunohistochemistry and Western blotting revealed that PGAM1 expression was upregulated in prostate cancer tissues and cell lines. PGAM1 expression was associated with Gleason score (P = 0.01) and T-stage (P = 0.009). Knockdown of PGAM1 by siRNA in PC-3 and 22Rv1 prostate cancer cell lines inhibited cell proliferation, migration, and invasion and enhanced cancer cell apoptosis. In a nude mouse xenograft model, PGAM1 knockdown markedly suppressed tumor growth. Deletion of PGAM1 resulted in decreased expression of Bcl-2, enhanced expression of Bax, caspases-3 and inhibition of MMP-2 and MMP-9 expression. Our results indicate that PGAM1 may play an important role in prostate cancer progression and aggressiveness, and that it might be a valuable marker of poor prognosis and a potential therapeutic target for prostate cancer.
Animals
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Apoptosis/genetics*
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Caspase 3/metabolism*
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Cell Line, Tumor
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Cell Movement/genetics*
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Cell Proliferation/genetics*
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Gene Deletion
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Gene Knockdown Techniques
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Humans
;
Male
;
Matrix Metalloproteinase 2/metabolism*
;
Matrix Metalloproteinase 9/metabolism*
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Mice
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Mice, Nude
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Neoplasm Invasiveness/genetics*
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Neoplasm Transplantation
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PC-3 Cells
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Phosphoglycerate Mutase/genetics*
;
Prostatic Neoplasms/pathology*
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Proto-Oncogene Proteins c-bcl-2/metabolism*
;
RNA, Small Interfering
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Transplantation, Heterologous
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bcl-2-Associated X Protein/metabolism*