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Merck
CN
  • Follicular lymphoma-associated mutations in vacuolar ATPase ATP6V1B2 activate autophagic flux and mTOR.

Follicular lymphoma-associated mutations in vacuolar ATPase ATP6V1B2 activate autophagic flux and mTOR.

The Journal of clinical investigation (2019-02-06)
Fangyang Wang, Damián Gatica, Zhang Xiao Ying, Luke F Peterson, Peter Kim, Denzil Bernard, Kamlai Saiya-Cork, Shaomeng Wang, Mark S Kaminski, Alfred E Chang, Tycel Phillips, Daniel J Klionsky, Sami N Malek
摘要

The discovery of recurrent mutations in subunits of the vacuolar-type H+-translocating ATPase (v-ATPase) in follicular lymphoma (FL) highlights a role for the amino acid- and energy-sensing pathway to mTOR in the pathogenesis of this disease. Here, through the use of complementary experimental approaches involving mammalian cells and Saccharomyces cerevisiae, we have demonstrated that mutations in the human v-ATPase subunit ATP6V1B2 (also known as Vma2 in yeast) activate autophagic flux and maintain mTOR/TOR in an active state. Engineered lymphoma cell lines and primary FL B cells carrying mutated ATP6V1B2 demonstrated a remarkable ability to survive low leucine concentrations. The treatment of primary FL B cells with inhibitors of autophagy uncovered an addiction for survival for FL B cells harboring ATP6V1B2 mutations. These data support the idea of mutational activation of autophagic flux by recurrent hotspot mutations in ATP6V1B2 as an adaptive mechanism in FL pathogenesis and as a possible new therapeutically targetable pathway.

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Millipore
抗-FLAG® M2亲和凝胶, purified immunoglobulin, buffered aqueous glycerol solution
Sigma-Aldrich
磷酸酶抑制剂混合物3, DMSO solution
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乙二胺四乙酸 二钠盐 二水合物, reagent grade, 98.5-101.5% (titration)
Millipore
单克隆抗-HA−琼脂糖 小鼠抗, clone HA-7, purified immunoglobulin, PBS suspension
Sigma-Aldrich
正钒酸钠, 99.98% trace metals basis