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1. Liu, Y., Sun, R., Wang, W., Wang, J., Oppenheim, J.J., Chen, L., Zhang, N.*: The involvement of lipid rafts in epidermal growth factor-induced chemotaxis of breast cancer cells. Mol. Membr. Biol. 24: 91-101, 2007.
2. Liu, Y.#, Wang, B.#, Wang, J., Wan, W., Sun, R., Ma, Y., Zhao, Y., and Zhang, N.*: Down-regulation fo PKCzeta expression inhibits chemotaxis signal transduction in human lung cancer cells. Lung Cancer, 63: 210-218, 2009.(#co-first author)
3. Liu,Y., Wang, J.,Wu, M., Wan, W., Sun, R., Yang,D. Sun, X., Ma, D., Ying, G., Zhang, N.*: Down-regulation of PDK1 level inhibits chemotaxis and metastasis of human breast cancer cells.Mol. CancerRes.7:944-954, 2009.
4. Yang, Y.#,Liu, Y.#, Yao, X., Huang, J., Mou, H., Gong, W.,Chen, K., Bian, X., Wang J.M.*: Annexin 1 released by necrotic human glioblastoma cells stimulates tumor cellgrowth through the formyl peptide receptor 1.Am J Pathol. 179: 1504-1512, 2011.(#co-first author)
5. Liu, Y., Chen K, Yao, X., Gong, W., Liu, M., Wang, J.M.*: Formyl peptide receptor agonistic peptides. Handbook of biologically active peptides. Immunological and inflammatory peptides. Academic Press. (in press)
6. Liu, Y., Chen K, Wang, C., Gong, W., Yoshimura, T., Liu, M.*, Wang, J.M.*: Cell surface receptor FPR2 promotes anti-tumor host defense by limiting M2 polarization ofmacrophages. Cancer Res. 73: 550-560, 2013.
7. Zhao, C.#, Cai, M.#, Zhang, Y.#,Liu, Y., Sun, R., and Zhang, N.*: Development of a microscopy-based assay for protein kinase Czeta activation in human breast cancer cells. Anal. Biochem. 362: 8-15, 2007.(#co-first author)
8. Wan, W., Zou, H., Sun, R., Liu, Y., Wang, J., Ma, D., and Zhang, N.*: Investigate the role of PTEN in chemotaxis of human breast cancer cells. Cell. Signal. 19: 2227-2236, 2007.
9. Wang, J., Wan, W., Sun, R., Liu, Y., Sun, X., Ma, D., and Zhang, N.*: Depletion of Akt2 expression inhibits chemotaxis and metastasis of human breast cancer cells. Cell. Signal. 20: 1025-1034, 2008.
10. Chen, K., Huang, J., Liu, Y., Gong, W., Cui, Y., Wang, J.M.*: Synergy of TRIF-dependent TLR3 and MyD88-dependent TLR7 in up-regulating expression of mouse FPR2, a promiscuous G-protein-coupled receptor, in microglia cells. J Neuroimmunonol. 213: 69-77, 2009.
11. Chen, K., Le, Y., Liu, Y., Gong, W., Ying, G., Huang, J., Yoshimura, T., Tessarollo, L., Wang, J.M.*: A critical role for the G protein-coupled receptor mFPR2 in airway inflammation and immune responses. J Immunol. 184: 3331-3335, 2010.
12. Chen, K., Xiang, Y., Yao, X., Liu, Y., Gong, W.,Yoshimura, T., Wang, J.M.*: The active contribution of Toll-like receptors to allergic airway inflammation. Int Immunopharmacol. 11:1391-1398, 2011.
13. Yao, X, Liu, Y., Huang, J., Zhou, Y., Chen, K., Gong, W., Liu, M., Bian, X.W., Wang, J.M.*: The role of chemoattractant receptors in the progression of glioma. Glioma -Exploring Its Biology and Practical Relevance Intech, ISBN978-953-307-379-8. 13: 285-302, 2011.
14. Liu, M, Chen, K., Yoshimura, T., Liu, Y., Gong, W., Wang, A.,Gao, J.L., Murphy, P.M,, Wang, J.M.*: Formylpeptide receptors are critical forrapid neutrophil mobilization in hostdefense against Listeria monocytogenes. Scientific Rep. 2:1-7, 2012.
15. Chen, K, Liu, M., Liu, Y., Yoshimura, T., Shen, W., Le, Y., Durum, S., Gong, W., Wang, C., Gao, J.L., Murphy, P.M., Wang, J.M.*: Formylpeptide receptor-2 contributes to colonic epithelial homeostasis, inflammation, and tumorigenesis.J Clin Invest. 123:1694–1704, 2013.
16. Chen, K., Liu, M., Liu, Y., Wang, C., Yoshimura, T., Gong, W., Le, Y., Tessarollo, L., Wang, J.M.*: Signal relay by CCR2 and formylpeptide receptor-2 (Fpr2) in the recruitment of monocyte-derived dendritic cells in allergic airway inflammation. J Biol Chem. (in press)