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Data from Mnt-Deficient Mammary Glands Exhibit Impaired Involution and Tumors with Characteristics of Myc Overexpression

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<div>Abstract<p>The proto-oncogene c-Myc plays a central role in cell growth and the development of human tumors. c-Myc interacts with Max and Myc-Max complexes bind to E-box and related sequences to activate transcription. Max also interacts with Mnt but Mnt-Max complexes repress transcription when bound to these sequences. <i>MNT</i> maps to human chromosome 17p13.3, a region frequently deleted in various human tumors, including mammary gland tumors. Consistent with the possibility that Mnt functions as a Myc antagonist, Mnt-deficient fibroblasts exhibit many of the hallmark characteristics of cells that overexpress Myc, and conditional (Cre/Lox) inactivation of <i>Mnt</i> in mammary gland epithelium leads to adenocarcinomas. Here, we further characterize mammary gland tissue following conditional deletion of Mnt in the mammary gland. We show that loss of <i>Mnt</i> severely disrupts mammary gland involution and leads to hyperplastic ducts associated with reduced numbers of apoptotic cells. These findings suggest that loss of Mnt in mammary tissue has similarities to Myc overexpression. We tested this directly by using promoter array analysis and mRNA expression analysis by oligonucleotide arrays. We found that Mnt and c-Myc bound to similar promoters in tumors from <i>MMTV-c-Myc</i> transgenic mice, and mRNA expression patterns were similar between mammary tumors from <i>MMTV-Cre/Mnt<sup>KO/CKO</sup></i> and <i>MMTV-c-Myc</i> transgenic mice. These results reveal an important role for <i>Mnt</i> in pregnancy-associated mammary gland development and suggest that mammary gland tumorigenesis in the absence of Mnt is analogous to that caused by Myc deregulation. (Cancer Res 2006; 66(11): 5565-73)</p></div>
Title: Data from Mnt-Deficient Mammary Glands Exhibit Impaired Involution and Tumors with Characteristics of Myc Overexpression
Description:
<div>Abstract<p>The proto-oncogene c-Myc plays a central role in cell growth and the development of human tumors.
c-Myc interacts with Max and Myc-Max complexes bind to E-box and related sequences to activate transcription.
Max also interacts with Mnt but Mnt-Max complexes repress transcription when bound to these sequences.
<i>MNT</i> maps to human chromosome 17p13.
3, a region frequently deleted in various human tumors, including mammary gland tumors.
Consistent with the possibility that Mnt functions as a Myc antagonist, Mnt-deficient fibroblasts exhibit many of the hallmark characteristics of cells that overexpress Myc, and conditional (Cre/Lox) inactivation of <i>Mnt</i> in mammary gland epithelium leads to adenocarcinomas.
Here, we further characterize mammary gland tissue following conditional deletion of Mnt in the mammary gland.
We show that loss of <i>Mnt</i> severely disrupts mammary gland involution and leads to hyperplastic ducts associated with reduced numbers of apoptotic cells.
These findings suggest that loss of Mnt in mammary tissue has similarities to Myc overexpression.
We tested this directly by using promoter array analysis and mRNA expression analysis by oligonucleotide arrays.
We found that Mnt and c-Myc bound to similar promoters in tumors from <i>MMTV-c-Myc</i> transgenic mice, and mRNA expression patterns were similar between mammary tumors from <i>MMTV-Cre/Mnt<sup>KO/CKO</sup></i> and <i>MMTV-c-Myc</i> transgenic mice.
These results reveal an important role for <i>Mnt</i> in pregnancy-associated mammary gland development and suggest that mammary gland tumorigenesis in the absence of Mnt is analogous to that caused by Myc deregulation.
(Cancer Res 2006; 66(11): 5565-73)</p></div>.

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