Abstract

Biallelic inactivation of LKB1, a serine/threonine kinase, has been detected in 30% of lung adenocarcinomas, and inhibition of breast tumor growth has been demonstrated. We have identified the tumor suppressor, Nischarin, as a novel binding partner of LKB1. Our mapping analysis shows that the N terminus of Nischarin interacts with amino acids 44-436 of LKB1. Time lapse microscopy and Transwell migration data show that the absence of both Nischarin and LKB1 from an invasive breast cancer cell line (MDA-MB-231) enhances migration as measured by increased distance and speed of migrating cells. Our data suggest that this is a result of elevated PAK1 and LIMK1 phosphorylation. Moreover, the absence of Nischarin and LKB1 increased tumor growth in vivo. Consistent with this, the percentage of S phase cells was increased, as demonstrated by flow cytometry and enhanced cyclin D1. The absence of Nischarin and LKB1 also led to a dramatic increase in the formation of lung metastases. Our studies, for the first time, demonstrate functional interaction between LKB1 and Nischarin to inhibit cell migration and breast tumor progression. Mechanistically, we show that these two proteins together regulate PAK-LIMK-Cofilin and cyclin D1/CDK4 pathways.

Highlights

  • This work examines the importance of interaction between Nischarin and LKB1

  • We have shown a biochemical connection between two tumor suppressors, Nischarin and LKB1, demonstrating that Nischarin is a novel binding partner of LKB1

  • We found that LKB1 interacted with the N terminus of Nischarin and, that the amino acids 416 – 624 of Nischarin are crucial for this interaction

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Summary

Background

This work examines the importance of interaction between Nischarin and LKB1. Results: Nischarin and LKB1 interact in vivo. For the first time, demonstrate functional interaction between LKB1 and Nischarin to inhibit cell migration and breast tumor progression. Overexpression of the LKB1 protein in breast cancer cells significantly inhibited tumor growth [21]. Together, these findings show that LKB1 is an important tumor suppressor. We evaluated the combined effect of Nischarin and LKB1 expression on migration, anchorage-independent growth, tumor formation, and, most importantly, metastasis of highly invasive breast cancer cells. We have shown that the inhibition of cell migration is associated with down-regulation of PAK1 and LIMK1 This is the first evidence of the tumor suppressor LKB1 inhibiting LIMK1 and cofilin. Considering the importance of LKB1 and Nischarin in metastasis, these findings will be important in determining the role of the LKB1-Nischarin interaction in breast cancer and will provide a foundation for subsequent preclinical and clinical studies

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