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Macrophage migration inhibitory factor expression is increased in pituitary adenoma cell nuclei
M E Pyle1, M Korbonits, M Gueorguiev
1Endocrine Oncology, Department of Endocrinology, St Bartholomew's Hospital, West Smithfield, London EC1A 7BE, UK.
Abstract:
Macrophage migration inhibitory factor (MIF) is an essential regulator of the macrophage responses to endotoxin. MIF also has the ability to override the anti-inflammatory actions of glucocorticoids during an immune response, and is thus an important pro-inflammatory factor. The presence of MIF in cells of the anterior pituitary has been described, and high levels of MIF in other rapidly proliferating tIssues have also been demonstrated. It has been hypothesised that MIF release from these cells is influenced by the hypothalamo-pituitary-adrenal axis, and that ACTH and MIF are released simultaneously to exert counter-regulatory effects on cortisol. However, another intracellular role for MIF has also been suggested as it has been shown that MIF exerts an effect on the inhibitory cell cycle control protein p27 through an interaction with Jab1, a protein implicated in p27 degradation. We studied MIF expression in different normal and adenomatous human pituitary samples using immunohistochemistry and RT-PCR. There was evidence of co-immunoprecipitation of MIF with Jab1, suggesting an interaction of the two proteins. Our results showed that there is increased expression of MIF protein in the nuclei of all pituitary adenomas compared with normal tIssue (P=0.0067), but there was no statistically significant difference in nuclear MIF expression between the different adenoma types. Nuclear MIF expression correlated positively with p27 and its phosphorylated form in normal tIssue (P=0.0028 and P<0.0001); however, this relationship was not seen in the adenoma samples. Cytoplasmic expression of MIF was found to be variable both in normal and adenomatous samples, with no consistent pattern. MIF mRNA was demonstrated to be present in all tumour and normal samples studied. Somatotroph tumours showed higher MIF mRNA expression compared with normal pituitary or other types of adenomas. In conclusion, MIF is expressed in cell nuclei in pituitary adenomas to a greater extent than in normal pituitary tIssue. We speculate that it may play a role in the control of the cell cycle, but whether its higher level in adenomas is a cause or a consequence of the tumorigenic process remains to be clarified.
Insights
Macrophage migration inhibitory factor (MIF) is upregulated in pituitary adenomas, particularly in cell nuclei. This suggests a potential role for MIF in cell cycle control within these tumors.
Area of Science:
- Endocrinology
- Molecular Biology
- Oncology
Background:
- Macrophage migration inhibitory factor (MIF) is a pro-inflammatory cytokine involved in immune responses and glucocorticoid counter-regulation.
- MIF has been detected in the anterior pituitary and is hypothesized to interact with the hypothalamo-pituitary-adrenal axis.
- Intracellularly, MIF may influence cell cycle control via interaction with Jab1 and p27.
Purpose of the Study:
- To investigate the expression and potential role of MIF in normal human pituitary tissue and pituitary adenomas.
- To examine the relationship between MIF, Jab1, and p27 in pituitary adenomas.
- To determine if MIF expression differs between normal pituitary tissue and various types of pituitary adenomas.
Main Methods:
- Immunohistochemistry and RT-PCR were used to analyze MIF expression in normal pituitary and pituitary adenoma samples.
- Co-immunoprecipitation was performed to assess the interaction between MIF and Jab1.
- Correlation analysis was conducted between nuclear MIF expression and p27/phosphorylated p27 levels.
Main Results:
- MIF protein expression was significantly increased in the nuclei of all pituitary adenomas compared to normal pituitary tissue.
- Nuclear MIF expression correlated with p27 and its phosphorylated form in normal tissue but not in adenomas.
- MIF mRNA was detected in all samples, with higher expression in somatotroph tumors compared to normal pituitary or other adenoma types.
- Evidence of co-immunoprecipitation between MIF and Jab1 suggests an interaction.
Conclusions:
- Pituitary adenomas exhibit increased nuclear expression of MIF compared to normal pituitary tissue.
- MIF may play a role in pituitary tumor cell cycle regulation.
- Further research is needed to determine if elevated MIF in adenomas is a cause or consequence of tumorigenesis.

