14-3-3 Proteins interact with FRMD6 and regulate its subcellular localization in breast cancer cells

Fanbo Meng , Wei Feng , Hua Xin , Zhuang Tian , Yu Zhang , Liping Zhang

Chemical Research in Chinese Universities ›› 2015, Vol. 31 ›› Issue (4) : 558 -563.

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Chemical Research in Chinese Universities ›› 2015, Vol. 31 ›› Issue (4) : 558 -563. DOI: 10.1007/s40242-015-5097-z
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14-3-3 Proteins interact with FRMD6 and regulate its subcellular localization in breast cancer cells

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Abstract

The Hippo pathway is evolutionarily conserved from Drosophila to mammals. FRMD6 is one crucial upstream component of the Hippo pathway while its function and regulatory mechanism are largely elusive. We decided to purify the protein complex of FRMD6 to further explore its regulatory mechanism. We established the MCF7 breast cancer cells that stably expressed FRMD6 by retroviruses infection. And we purified the FRMD6-interacting protein complex for further analysis by high performance liquid chromatography-mass spectrometry/mass spectrometry(HPLCMS/ MS). Interestingly, we observed that the major binding partner of FRMD6 is 14-3-3 family of proteins. The interaction between FRMD6 and 14-3-3 proteins was detected by co-immunoprecipitation(CO-IP). The disruption of their interaction resulted in the nuclear localization of FRMD6. Importantly, the T28A mutant of FRMD6 showed stronger tumor suppressor function than wild type(WT) FRMD6. Our results indicate that 14-3-3 proteins tightly regulate the subcellular localization of FRMD6 so as to endow FRMD6 with the tumor suppressor function on breast cancer.

Keywords

FRMD6 / 14-3-3 protein / Interacting protein complex / Nuclear localization

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Fanbo Meng, Wei Feng, Hua Xin, Zhuang Tian, Yu Zhang, Liping Zhang. 14-3-3 Proteins interact with FRMD6 and regulate its subcellular localization in breast cancer cells. Chemical Research in Chinese Universities, 2015, 31(4): 558-563 DOI:10.1007/s40242-015-5097-z

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References

[1]

Pan D. Genes Dev, 2007, 21(21): 886.

[2]

Zhao B., Li L., Lei Q. Y., Guan K. L. Genes Dev, 2010, 24(24): 862.

[3]

Zhao B., Wei X., Li W., Udan R. S., Yang Q., Kim J., Xie J., Ikenoue T., Yu J., Li L., Zheng P., Ye K., Chinnaiyan A., Halder G., Lai Z. C., Guan K. L. Genes Dev, 2007, 21(21): 2747.

[4]

Dong J., Feldmann G., Huang J., Wu S., Zhang N., Comerford S. A., Gayyed M. F., Anders R. A., Maitra A. Pan D., Cell, 2007, 130(130): 1120.

[5]

Lei Q. Y., Zhang H., Zhao B., Zha Z. Y., Bai F., Pei X. H., Zhao S., Xiong Y., Guan K. L. Mol. Cell Biol, 2008, 28(28): 2426.

[6]

Hao Y., Chun A., Cheung K., Rashidi B., Yang X. J. Biol. Chem, 2008, 283(283): 5496.

[7]

Zhao B., Li L., Tumaneng K., Wang C. Y., Guan K. L. Genes Dev, 2010, 24(24): 72.

[8]

Liu C. Y., Zha Z. Y., Zhou X., Zhang H., Huang W., Zhao D., Li T., Chan S. W., Lim C. J., Hong W., Zhao S., Xiong Y., Lei Q. Y., Guan K. L. J. Biol. Chem, 2010, 285(285): 37159.

[9]

Huang W., X., Liu C., Zha Z., Zhang H., Jiang Y., Xiong Y., Lei Q. Y., Guan K. L. J. Biol. Chem, 2012, 287(287): 26245.

[10]

Zhao B., Ye X., Yu J., Li L., Li W., Li S., Lin J. D., Wang C. Y., Chinnaiyan A. M., Lai Z. C., Guan K. L. Genes Dev, 2008, 22(22): 1962.

[11]

Zhang H., Liu C. Y., Zha Z. Y., Zhao B., Yao J., Zhao S., Xiong Y., Lei Q. Y., Guan K. L. J. Biol. Chem, 2009, 284(284): 13355.

[12]

Harvey K. F., Zhang X., Thomas D. M. Nat. Rev. Cancer, 2013, 13(13): 246.

[13]

Murakami H., Mizuno T., Taniguchi T., Fujii M., Ishiguro F., Fukui T., Akatsuka S., Horio Y., Hida T., Kondo Y., Toyokuni S., Osada H., Sekido Y. Cancer Res, 2011, 71(71): 873.

[14]

Chan S. W., Lim C. J., Guo K., Ng C. P., Lee I., Hunziker W., Zeng Q., Hong W. Cancer Res, 2008, 68(68): 2592.

[15]

Matsuura K., Nakada C., Mashio M., Narimatsu T., Yoshimoto T., Tanigawa M., Tsukamoto Y., Hijiya N., Takeuchi I., Nomura T., Sato F., Mimata H., Seto M., Moriyama M., BMC Cancer, 2011, 11, 523

[16]

Edgar B. A., Cell, 2006, 124(124), 267

[17]

Hamaratoglu F., Willecke M., Kango-Singh M., Nolo R., Hyun E., Tao C., Jafar-Nejad H., Halder G. Nat. Cell Biol, 2006, 8(8): 27.

[18]

Gunn-Moore F. J., Welsh G. I., Herron L. R., Brannigan F., Venkateswarlu K., Gillespie S., Brandwein-Gensler M., Madan R., Tavare J. M., Brophy P. J., Prystowsky M. B., Guild S. FEBS Lett, 2005, 579(579): 5089.

[19]

Angus L., Moleirinho S., Herron L., Sinha A., Zhang X., Niestrata M., Dholakia K., Prystowsky M. B., Harvey K. F., Reynolds P. A., Gunn-Moore F. J. Oncogene, 2012, 31(31): 238.

[20]

Visser-Grieve S., Hao Y., Yang X. Oncogene, 2012, 31(31): 1189.

[21]

Fu H., Subramanian R. R., Masters S. C. Annu. Rev. Pharmacol. Toxicol, 2000, 40: 617.

[22]

Xin H., Zhang Y., Li L., Zhang L. Chem. Res. Chinese Universities, 2013, 29(29): 280.

[23]

Xu T., Wang W., Zhang S., Stewart R. A., Yu W. Development, 1995, 121(121): 1053.

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