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Leyuan Liu
Leyuan Liu
Guangzhou Medical University
Verified email at tamu.edu
Title
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Cited by
Year
Guidelines for the use and interpretation of assays for monitoring autophagy
DJ Klionsky, K Abdelmohsen, A Abe, MJ Abedin, H Abeliovich, ...
Autophagy 8 (4), 445-544, 2012
13110*2012
Acetylated microtubules are required for fusion of autophagosomes with lysosomes
R Xie, S Nguyen, WL McKeehan, L Liu
BMC cell biology 11, 1-12, 2010
2402010
Spermidine prolongs lifespan and prevents liver fibrosis and hepatocellular carcinoma by activating MAP1S-mediated autophagy
F Yue, W Li, J Zou, X Jiang, G Xu, H Huang, L Liu
Cancer research 77 (11), 2938-2951, 2017
1512017
Microtubule-associated protein 1S (MAP1S) bridges autophagic components with microtubules and mitochondria to affect autophagosomal biogenesis and degradation
R Xie, S Nguyen, K McKeehan, F Wang, WL McKeehan, L Liu
Journal of Biological Chemistry 286 (12), 10367-10377, 2011
1382011
Sequence analysis of LRPPRC and its SEC1 domain interaction partners suggests roles in cytoskeletal organization, vesicular trafficking, nucleocytosolic shuttling, and …
L Liu, WL McKeehan
Genomics 79 (1), 124-136, 2002
1012002
High expression of CD147 and MMP-9 is correlated with poor prognosis of triple-negative breast cancer (TNBC) patients
S Zhao, W Ma, M Zhang, D Tang, Q Shi, S Xu, X Zhang, Y Liu, Y Song, ...
Medical Oncology 30, 1-8, 2013
982013
FRS2α-mediated FGF signals suppress premature differentiation of cardiac stem cells through regulating autophagy activity
J Zhang, J Liu, Y Huang, JYF Chang, L Liu, WL McKeehan, JF Martin, ...
Circulation research 110 (4), e29-e39, 2012
972012
The fibroblast growth factor signaling axis controls cardiac stem cell differentiation through regulating autophagy
J Zhang, J Liu, L Liu, WL McKeehan, F Wang
Autophagy 8 (4), 690-691, 2012
782012
Novel complex integrating mitochondria and the microtubular cytoskeleton with chromosome remodeling and tumor suppressor RASSF1 deduced by in silico homology analysis …
L Liu, A Vo, G Liu, WL McKeehan
In Vitro Cellular & Developmental Biology-Animal 38 (10), 582-594, 2002
752002
Specificity of the methylation-suppressed A isoform of candidate tumor suppressor RASSF1 for microtubule hyperstabilization is determined by cell death inducer C19ORF5
L Liu, A Vo, WL McKeehan
Cancer research 65 (5), 1830-1838, 2005
742005
Autophagy enhanced by microtubule-and mitochondrion-associated MAP1S suppresses genome instability and hepatocarcinogenesis
R Xie, F Wang, WL McKeehan, L Liu
Cancer research 71 (24), 7537-7546, 2011
722011
Distinct structural domains within C19ORF5 support association with stabilized microtubules and mitochondrial aggregation and genome destruction
L Liu, A Vo, G Liu, WL McKeehan
Cancer research 65 (10), 4191-4201, 2005
672005
Mitochondrion-associated protein LRPPRC suppresses the initiation of basal levels of autophagy via enhancing Bcl-2 stability
J Zou, F Yue, X Jiang, W Li, J Yi, L Liu
Biochemical Journal 454 (3), 447-457, 2013
582013
Robust autophagy/mitophagy persists during mitosis
L Liu, R Xie, S Nguyen, M Ye, WL McKeehan
Cell Cycle 8 (10), 1616-1620, 2009
522009
Spermidine confers liver protection by enhancing NRF2 signaling through a MAP1S-mediated non-canonical mechanism.
ZDD Liu P, Vega MR, Dodson M, Yue F, Shi B, Fang D, Chapman E, Liu L
Hepatology 70 (1), 372-388, 2019
502019
Metastatic prostate cancer‐associated P62 inhibits autophagy flux and promotes epithelial to mesenchymal transition by sustaining the level of HDAC6
X Jiang, Y Huang, X Liang, F Jiang, Y He, T Li, G Xu, H Zhao, W Yang, ...
The Prostate 78 (6), 426-434, 2018
492018
Fast clearance of lipid droplets through MAP1S-activated autophagy suppresses clear cell renal cell carcinomas and promotes patient survival
G Xu, Y Jiang, Y Xiao, XD Liu, F Yue, W Li, X Li, Y He, X Jiang, H Huang, ...
Oncotarget 7 (5), 6255, 2016
492016
Matrine suppresses invasion of castration-resistant prostate cancer cells by downregulating MMP-2/9 via NF-κB signaling pathway
H Huang, T Du, G Xu, Y Lai, X Fan, X Chen, W Li, F Yue, Q Li, L Liu, K Li
International Journal of Oncology 50 (2), 640-648, 2017
482017
Autophagy defects suggested by low levels of autophagy activator MAP1S and high levels of autophagy inhibitor LRPPRC predict poor prognosis of prostate cancer patients
X Jiang, W Zhong, H Huang, H He, F Jiang, Y Chen, F Yue, J Zou, X Li, ...
Molecular carcinogenesis 54 (10), 1194-1204, 2015
482015
Elevated levels of mitochondrion‐associated autophagy inhibitor LRPPRC are associated with poor prognosis in patients with prostate cancer
X Jiang, X Li, H Huang, F Jiang, Z Lin, H He, Y Chen, F Yue, J Zou, Y He, ...
Cancer 120 (8), 1228-1236, 2014
472014
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