[1] Chen YF, Chen YT, Chiu WT, et al. Remodeling of calcium signaling in tumor progression[J]. J Biomed Sci, 2013, 20:23.
[2] Nagano M, Hoshino D, Koshikawa N, et al. Turnover of focal adhesions and cancer cell migration[J]. Int J Cell Biol, 2012, 2012:310616.
[3] Prevarskaya N, Skryma R, Shuba Y. Calcium in tumour metastasis: new roles for known actors[J]. Nat Rev Cancer, 2011, 11(8):609-618.
[4] Wei C, Wang X, Chen M, et al. Calcium flickers steer cell migration[J]. Nature, 2009, 457(7231):901-905.
[5] Storr S J, Carragher NO, Frame MC, et al. The calpain system and cancer[J]. Nat Rev Cancer, 2011, 11(5):364-374.
[6] Raimbourg Q, Perez J, Vandermeersch S, et al. The calpain/calpastatin system has opposing roles in growth and metastatic dissemination of melanoma[J]. PLoS One, 2013, 8(4):e60469.
[7] Schaller MD. Cellular functions of FAK kinases: insight into molecular mechanisms and novel functions[J]. J Cell Sci, 2010, 123(Pt 7):1007-1013.
[8] Golubovskaya VM, Huang G, Ho B, et al. Pharmacologic blockade of FAK autophosphorylation decreases human glioblastoma tumor growth and synergizes with temozolomide[J]. Mol Cancer Ther, 2013, 12(2):162-172.
[9] Loftus JC, Ross JT, Paquette KM, et al. miRNA expression profiling in migrating glioblastoma cells: regulation of cell migration and invasion by miR23b via targeting of Pyk2[J]. PLoS One, 2012, 7(6):e39818.
[10] Donato R, Cannon BR, Sorci G, et al. Functions of S100 proteins[J]. Curr Mol Med, 2013, 13(1):24-57.
[11] Bowers RR, Manevich Y, Townsend DM, et al. Sulfiredoxin redoxsensitive interaction with S100A4 and nonmuscle myosin ⅡA regulates cancer cell motility[J]. Biochemistry, 2012, 51(39):7740-7754.
[12] Lukanidin E, Sleeman JP. Building the niche: the role of the S100 proteins in metastatic growth[J]. Semin Cancer Biol, 2012, 22(3):216-225.
[13] Putney JW. The physiological function of storeoperated calcium entry[J]. Neurochem Res, 2011, 36(7):1157-1165.
[14] Soboloff J, Rothberg BS, Madesh M, et al. STIM proteins: dynamic calcium signal transducers[J]. Nat Rev Mol Cell Biol, 2012, 13(9):549-565.
[15] Varnai P, Hunyady L, Balla T. STIM and Orai: the longawaited constituents of storeoperated calcium entry[J]. Trends Pharmacol Sci, 2009, 30(3):118-128.
[16] Yang S, Zhang JJ, Huang XY. Orai1 and STIM1 are critical for breast tumor cell migration and metastasis[J]. Cancer Cell, 2009, 15(2):124-134.
[17] Chen YF, Chiu WT, Chen YT, et al. Calcium store sensor stromalinteraction molecule 1dependent signaling plays an important role in cervical cancer growth, migration, and angiogenesis[J]. Proc Natl Acad Sci USA, 2011, 108(37):15225-15230.
[18] Yang N, Tang Y, Wang F, et al. Blockade of storeoperated Ca(2+) entry inhibits hepatocarcinoma cell migration and invasion by regulating focal adhesion turnover[J]. Cancer Lett, 2013, 330(2):163-169.
[19] Motiani RK, HyzinskiGarcia MC, Zhang X, et al. STIM1 and Orai1 mediate CRAC channel activity and are essential for human glioblastoma invasion[J]. Pflugers Arch, 2013, 465(9):1249-1260.
[20] Numata T, Shimizu T, Okada Y. TRPM7 is a stretch and swellingactivated cation channel involved in volume regulation in human epithelial cells[J]. Am J Physiol Cell Physiol, 2007, 292(1):C460-C467.
[21] Su LT, Agapito MA, Li M, et al. TRPM7 regulates cell adhesion by controlling the calciumdependent protease calpain[J]. J Biol Chem, 2006, 281(16):11260-11270.
[22] Middelbeek J, Clark K, Venselaar H, et al. The alphakinase family: an exceptional branch on the protein kinase tree[J]. Cell Mol Life Sci, 2010, 67(6):875-890.
[23] Chen JP, Luan Y, You CX, et al. TRPM7 regulates the migration of human nasopharyngeal carcinoma cell by mediating Ca(2+) influx[J]. Cell Calcium, 2010, 47(5):425-432. |