MST4 Phosphorylation of ATG4B Regulates Autophagic Activity, Tumorigenicity, and Radioresistance in Glioblastoma

Фосфорилирование ATG4B киназой MST4 регулирует аутофагическую активность, опухолеобразование и радиорезистентность при глиобластоме
Tianzhi Huang, Chung Kwon Kim, Angel A. Alvarez, Rajendra P. Pangeni, Xuechao Wan, Xiao Song, Taiping Shi, Yongyong Yang, Namratha Sastry, Craig Horbinski, Songjian Lu, Roger Stupp, John A. Kessler, Ryo Nishikawa, Ichiro Nakano, Erik P. Sulman, Xinghua Lu, C. David James, Xiao-Ming Yin, Bo Hu, Shi‐Yuan Cheng
2017-12-01

ATG4B phosphorylationAutophagic fluxGlioblastoma radioresistanceMST4-ATG4B signaling axisRadiotherapy
ATG4B stimulates autophagy by promoting autophagosome formation through reversible modification of ATG8. We identify ATG4B as a substrate of mammalian sterile20-like kinase (STK) 26/MST4. MST4 phosphorylates ATG4B at serine residue 383, which stimulates ATG4B activity and increases autophagic flux. Inhibition of MST4 or ATG4B activities using genetic approaches or an inhibitor of ATG4B suppresses autophagy and the tumorigenicity of glioblastoma (GBM) cells. Furthermore, radiation induces MST4 expression, ATG4B phosphorylation, and autophagy. Inhibiting ATG4B in combination with radiotherapy in treating mice with intracranial GBM xenograft markedly slows tumor growth and provides a significant survival benefit. Our work describes an MST4-ATG4B signaling axis that influences GBM autophagy and malignancy, and whose therapeutic targeting enhances the anti-tumor effects of radiotherapy.
1
Combining ATG4B inhibition with radiotherapy markedly slows intracranial glioblastoma xenograft growth and significantly improves mouse survival.
2
Genetic or pharmacological inhibition of MST4 or ATG4B suppresses autophagy and reduces glioblastoma cell tumorigenicity.
3
MST4 phosphorylates ATG4B at serine 383, stimulating ATG4B activity and increasing autophagic flux in glioblastoma cells.
4
Radiation induces MST4 expression, ATG4B phosphorylation, and autophagy in glioblastoma.
5
The MST4–ATG4B signaling axis regulates glioblastoma autophagy and malignancy and represents a therapeutic target for enhancing radiotherapy.

MST4–ATG4B signaling in glioblastoma cells and intracranial glioblastoma xenografts

Ser383 phosphorylation of ATG4B and its effects on autophagic flux, glioblastoma tumorigenicity, radiation-induced responses, and radiosensitivity

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2017-12-01
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Tianzhi Huang
Chung Kwon Kim
Angel A. Alvarez
Rajendra P. Pangeni
Xuechao Wan
Xiao Song
Taiping Shi
Yongyong Yang
Namratha Sastry
Craig Horbinski
Songjian Lu
Roger Stupp
John A. Kessler
Ryo Nishikawa
Ichiro Nakano
Erik P. Sulman
Xinghua Lu
C. David James
Xiao-Ming Yin
Bo Hu
Shi‐Yuan Cheng
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