Li, H.; Liu, F.; Kuang, H.; Teng, H.; Chen, S.; Zeng, S.; Zhou, Q.; Li, Z.; Liang, D.; Li, Z.;
et al. WDR73 Depletion Destabilizes PIP4K2C Activity and Impairs Focal Adhesion Formation in Galloway–Mowat Syndrome. Biology 2022, 11, 1397.
https://doi.org/10.3390/biology11101397
AMA Style
Li H, Liu F, Kuang H, Teng H, Chen S, Zeng S, Zhou Q, Li Z, Liang D, Li Z,
et al. WDR73 Depletion Destabilizes PIP4K2C Activity and Impairs Focal Adhesion Formation in Galloway–Mowat Syndrome. Biology. 2022; 11(10):1397.
https://doi.org/10.3390/biology11101397
Chicago/Turabian Style
Li, Hongyan, Fang Liu, Hanzhe Kuang, Hua Teng, Siyi Chen, Sijing Zeng, Qimin Zhou, Zhaokai Li, Desheng Liang, Zhuo Li,
and et al. 2022. "WDR73 Depletion Destabilizes PIP4K2C Activity and Impairs Focal Adhesion Formation in Galloway–Mowat Syndrome" Biology 11, no. 10: 1397.
https://doi.org/10.3390/biology11101397
APA Style
Li, H., Liu, F., Kuang, H., Teng, H., Chen, S., Zeng, S., Zhou, Q., Li, Z., Liang, D., Li, Z., & Wu, L.
(2022). WDR73 Depletion Destabilizes PIP4K2C Activity and Impairs Focal Adhesion Formation in Galloway–Mowat Syndrome. Biology, 11(10), 1397.
https://doi.org/10.3390/biology11101397