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Published on: November 5, 2019
SMARCB1 regulates the hypoxic stress response in sickle cell trait
Melinda Soeung1, Luigi Perelli2, Ziheng Chen1
1Department of Genomic Medicine, The University of Texas MD Anderson Cancer Center, Houston, TX 77025.
Loss of the tumor suppressor SMARCB1 aids renal cell survival under hypoxic stress, a condition exacerbated by sickle cell trait (SCT). This explains the increased risk of SMARCB1-negative renal medullary carcinoma in individuals with SCT.
Area of Science:
- Oncology
- Genetics
- Pathophysiology
Background:
- Renal medullary carcinoma (RMC) is an aggressive kidney cancer predominantly affecting individuals with sickle cell trait (SCT).
- Loss of the tumor suppressor gene *SMARCB1* is a hallmark of RMC.
- Sickle cell trait induces chronic renal medullary hypoxia, potentially influencing RMC development.
Purpose of the Study:
- To investigate if loss of *SMARCB1* provides a survival advantage under hypoxic conditions relevant to SCT.
- To elucidate the role of *SMARCB1* in renal cell response to hypoxia.
- To understand the mechanisms behind RMC's resistance to anti-angiogenesis therapies.
Main Methods:
- Studied hypoxia-induced *SMARCB1* degradation in renal cells.
- Compared the growth of *SMARCB1* wild-type and null renal tumors in mouse models with and without SCT-associated mutations.
- Assessed the sensitivity of *SMARCB1*-null tumors to hypoxia-inducing anti-angiogenesis therapy.
- Reconstituted *SMARCB1* expression to evaluate its effect on tumor sensitivity to hypoxia in vitro and in vivo.
Main Results:
- Hypoxia triggers *SMARCB1* degradation, conferring a survival advantage to renal cells.
- *SMARCB1*-wild-type tumors showed more aggressive growth in SCT models due to lower *SMARCB1* levels.
- *SMARCB1*-null RMC tumors were resistant to hypoxia-based anti-angiogenesis therapies.
- Restoring *SMARCB1* re-sensitized tumors to hypoxic stress.
Conclusions:
- *SMARCB1* degradation is a physiological response to hypoxic stress.
- SCT-induced renal medullary hypoxia contributes to the development of *SMARCB1*-negative RMC.
- *SMARCB1* status is crucial for RMC's resistance to anti-angiogenesis treatments.
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