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Jian-ming Zheng

Publications and source records attributed to Jian-ming Zheng.

5 recordsLinked to original sources

Relationship between levels of Skp2 and P27 in breast carcinomas and possible role of Skp2 as targeted therapy.

Estrogen receptor-negative breast carcinomas are more aggressive and are unresponsive to anti-estrogens. Thus, they clearly require new therapies targeted against specific genes and proteins actively engaged in the pathophysiology of cancer. The S-phase kinase-associated protein Skp2 is required for the ubiquitin-mediated degradation of the cdk-inhibitor p27 and is a bona fide proto-oncoprotein. We attempted to explore whether Skp2 may be a potential specific therapeutic target in the subset of aggressive breast carcinomas by investigating the possible relationship between expression of Skp2 and p27 proteins and estrogen receptor (ER). Immunohistochemical analysis of tumor tissues was employed to determine the expression of Skp2, p27, and ER proteins in 82 cases of primary breast carcinoma. Higher levels of Skp2 were detected more frequently in ER-negative tumors and tumors metastatic to the axillary lymph nodes. The expression of p27 was inverse with the histologic grade. Statistical analysis showed that the percentage of high Skp2 expressors was significantly greater in the group with low p27 expression than in the group with high p27 expression. The current study, together with the results from a previous study, demonstrated the existence of a subtype of high-grade, negative ER breast carcinomas with high Skp2 and low p27 levels. This implies that Skp2 may be a potential specific therapeutic target in a subset of aggressive breast carcinomas. Thus far, there is no specific therapy for the ER-negative and HER-2/neu resistant groups, which are among the subset of aggressive tumors.

Breast Neoplasms↗

Expression of ATM protein and its relationship with p53 in pancreatic carcinoma with tissue array.

ATM protein anticipates in the initiation of the DNA repair signal pathway and also mediates cell cycle arrest and repair. ATM deficiency predictably results in radiosensitivity, germ cell degeneration, chromosomal instability, immunodeficiency, and an extreme predisposition to tumors. Moreover, studies found that ATM is the upstream gene of the p53 pathway and would phosphorylate p53 directly after DNA damage, which would suppress tumorigenesis. Expression of ATM and p53 in 167 pancreatic cancer and 101 control specimens, benign lesions, and normal pancreata were detected by high-throughput tissue microarray and immunohistochemistry while seeking the role of ATM in the initiation and development of pancreatic carcinoma as well as its relationship with p53. We found that the positive rates of ATM and p53 expression in pancreatic carcinoma and its relative control specimen were 67.7% (113/167) and 82.2% (83/101) (P < 0.05) and 57.5% (96/167) and 5.0% (5/101) (P < 0.01), respectively. ATM positive staining is significantly relative to age and infiltration (P < 0.05), while the expression of p53 was significantly associated with tumor differentiation, lymph node metastasis, and nerve infiltration (P < 0.05). Expression of ATM and p53 was positively correlated. These findings suggest that expression of ATM deficiency may increase the transformative ability of pancreatic cancer cells. ATM may also cooperate with p53 in the repair of cell damage.

Adult↗

[Expression of proteins in p53 (p14ARF-mdm2-p53-p21WAF/CIP1) pathway and their significance in exocrine pancreatic carcinoma].

OBJECTIVE: To investigate the expression of p14(ARF), p53, mdm2 and p21(WAF/CIP1) proteins and their relationship in exocrine pancreatic carcinoma. METHODS: Specimens of pancreatic carcinoma, adjacent non-neoplastic pancreatic tissue and pancreatic benign lesions were examined for p14(ARF), p53, mdm2 and p21(WAF/CIP1) protein expression by tissue microarray technique and immunohistochemistry. RESULTS: The expression of p14(ARF), p53, mdm2 and p21(WAF/CIP1) proteins in pancreatic carcinoma were 35.3% (59/167), 57.5% (96/101), 64.1% (107/167) and 39.5% (66/167) respectively. The expression of p53 proteins was increased in pancreatic carcinoma (P < 0.01), while the expression of p14(ARF) and p21(WAF/CIP1) proteins was reduced (P < 0.05), as compared with that in non-neoplastic pancreatic tissue. p21(WAF/CIP1) protein expression in pancreatic carcinoma significantly correlated with the age of patients and perineural invasion (P < 0.05). p53 protein expression correlated significantly with tumor differentiation, lymph node metastasis and perineural invasion (P < 0.05). Mdm2 protein expression correlated significantly with tumor differentiation (P < 0.05), while p14(ARF) protein expression correlated significantly with the age of patients and metastasis (P < 0.05). There was also statistic correlation between the expression of these four genes (P < 0.05). CONCLUSIONS: Overexpression of p53 and mdm2 and loss of p14(ARF) and p21(WAF/CIP1) expression may contribute to the pathogenesis of pancreatic carcinoma. These proteins play a critical role in cell cycle arrest and apoptosis after DNA damage through p14(ARF)-mdm2-p53-p21(WAF/CIP1) pathway. Detection of p53 and Mdm2 protein overexpression may be useful in evaluation of the aggressiveness of pancreatic carcinoma.

Adult↗

Long-range forces extending from polymer-gel surfaces.

Aqueous suspensions of microspheres were infused around gels of varying composition. The solutes were excluded from zones on the order of 100 microm from the gel surface. We present evidence that this finding is not an artifact, and that solute-repulsion forces exist at distances far greater than conventional theory predicts. The observations imply that solutes may interact over an unexpectedly long range.

Colloids↗