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Mortalin/HSPA9 targeting selectively induces KRAS tumor cell death by perturbing mitochondrial membrane permeability
Pui-Kei Wu1, Seung-Keun Hong1, Dmytro Starenki1
1Department of Biochemistry, Medical College of Wisconsin, Milwaukee, WI, 53226, USA.
Abstract:
The mitochondrial HSP70 chaperone mortalin (HSPA9/GRP75) is often upregulated and mislocalized in MEK/ERK-deregulated tumors. Here, we show that mortalin depletion can selectively induce death of immortalized normal fibroblasts IMR90E1A when combined with K-RasG12V expression, but not with wild-type K-Ras expression, and that K-RasG12V-driven MEK/ERK activity is necessary for this lethality. This cell death was attenuated by knockdown or inhibition of adenine nucleotide translocase (ANT), cyclophilin D (CypD), or mitochondrial Ca2+ uniporter (MCU), which implicates a mitochondria-originated death mechanism. Indeed, mortalin depletion increased mitochondrial membrane permeability and induced cell death in KRAS-mutated human pancreatic ductal adenocarcinoma (PDAC) and colon cancer lines, which were attenuated by knockdown or inhibition of ANT, CypD, or MCU, and occurred independently of TP53 and p21CIP1. Intriguingly, JG-98, an advanced MKT-077 derivative, phenocopied the lethal effects of mortalin depletion in K-RasG12V-expressing IMR90E1A and KRAS-mutated tumor cell lines in vitro. Moreover, JG-231, a JG-98 analog with improved microsomal stability effectively suppressed the xenograft of MIA PaCa-2, a K-RasG12C-expressing human PDAC line, in athymic nude mice. These data demonstrate that oncogenic KRAS activity sensitizes cells to the effects of mortalin depletion, suggesting that mortalin has potential as a selective therapeutic target for KRAS-mutated tumors.
Insights
Depleting mortalin (HSPA9/GRP75) selectively kills cancer cells with oncogenic K-Ras mutations by disrupting mitochondrial function. This suggests mortalin is a potential therapeutic target for KRAS-mutated tumors.
Area of Science:
- Oncology
- Molecular Biology
- Mitochondrial Biology
Background:
- Mortalin (HSPA9/GRP75), a mitochondrial chaperone, is upregulated in tumors with deregulated MEK/ERK signaling.
- Oncogenic KRAS mutations are common drivers in various cancers, including pancreatic and colon cancers.
Purpose of the Study:
- To investigate the role of mortalin in cancer cell death, particularly in the context of oncogenic KRAS.
- To explore mortalin as a potential therapeutic target for KRAS-mutated cancers.
Main Methods:
- Selective depletion of mortalin in cell lines expressing wild-type or mutant K-Ras.
- Assessment of cell death mechanisms, including mitochondrial membrane permeability and involvement of ANT, CypD, and MCU.
- In vitro and in vivo evaluation of small molecule inhibitors targeting mortalin activity (JG-98 and JG-231).
Main Results:
- Mortalin depletion selectively induced death in cells with K-RasG12V, dependent on MEK/ERK activity and involving mitochondrial dysfunction.
- This effect was observed in KRAS-mutated human pancreatic ductal adenocarcinoma and colon cancer lines, independent of TP53 and p21CIP1.
- Inhibitors JG-98 and JG-231 mimicked mortalin depletion effects and suppressed tumor xenografts in vivo.
Conclusions:
- Oncogenic KRAS sensitizes cells to mortalin depletion, highlighting a mitochondria-originated death pathway.
- Mortalin is a promising selective therapeutic target for KRAS-mutated cancers.
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