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Downregulation of Mad2 and BubR1 increase the malignant potential and nocodazole resistance by compromising spindle assembly checkpoint signaling pathway in cervical carcinogenesis
Author(s) -
Wang Li,
Wang Jian,
Jin Yubiao,
Zheng Jun,
Yang Yongbin,
Xi Xiaowei
Publication year - 2019
Publication title -
journal of obstetrics and gynaecology research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.597
H-Index - 50
eISSN - 1447-0756
pISSN - 1341-8076
DOI - 10.1111/jog.14120
Subject(s) - mad2 , nocodazole , cancer research , medicine , carcinogenesis , gene knockdown , downregulation and upregulation , cell cycle , apoptosis , cell cycle checkpoint , biology , cell , cancer , biochemistry , genetics , cytoskeleton , gene
Aim To explore the involvement of Mad2 and BubR1 in cervical carcinogenesis. Methods The expressions of Mad2 and BubR1 in tissues of high‐grade squamous intraepithelial lesions (HSIL), low‐grade squamous intraepithelial lesions (LSIL) and chronic cervicitis were analyzed immunohistochemistrily and compared with those of p16 INK4A . PEGFP‐Mad2 and pEGFP‐BubR1 were transfected into SiHa cells to overexpress Mad2 and BubR1 and Si‐RNAs to knockdown. Cell viability was measured by cell counting kit‐8 (CCK‐8) assay. Migration and invasion capabilities were detected by Transwell. Propidium iodide staining with flow cytometry was used for cell cycle analysis and apoptosis was detected using Annexin V/7‐AAD staining after nocodazole treatment. Results The expression of Mad2 was significantly lower in HSIL than those in chronic cervicitis and LSIL, however, the expression of BubR1 showed no significant differences. To detect HSIL in cervical lesions, Mad2 had a sensitivity of 88.44% and a specificity of 87.23%, Mad2 was less sensitive and more specific than p16 INK4a . In SiHa cells, knockdown of Mad2 and BubR1 increased cell growth, reinforced invasion capacity and migration potency, inhibited apoptosis and decreased G2‐phase distribution after nocodazole treatment. Oppositely, the overexpression strategies made cells show decreased malignant behaviors, raised apoptosis and increased G2‐phase distribution. Conclusion Mad2 negativity was specific to identify HSIL immunohistochemistrily. Downregulation of Mad2 and BubR1 increase the malignant behavior and nocodazole resistance of SiHa cells via causing spindle assembly checkpoint defect. This mechanism may contribute to cervical carcinogenesis and resistance to microtubule‐targeting drugs.