TGF-β/β2-spectrin/CTCF-regulated tumor suppression in human stem cell disorder Beckwith-Wiedemann syndrome
Abstract:
Beckwith-Wiedemann syndrome (BWS) is a human stem cell disorder, and individuals with this disease have a substantially increased risk (~800-fold) of developing tumors. Epigenetic silencing of β2-spectrin (β2SP, encoded by SPTBN1), a SMAD adaptor for TGF-β signaling, is causally associated with BWS; however, a role of TGF-β deficiency in BWS-associated neoplastic transformation is unexplored. Here, we have reported that double-heterozygous Sptbn1+/- Smad3+/- mice, which have defective TGF-β signaling, develop multiple tumors that are phenotypically similar to those of BWS patients. Moreover, tumorigenesis-associated genes IGF2 and telomerase reverse transcriptase (TERT) were overexpressed in fibroblasts from BWS patients and TGF-β-defective mice. We further determined that chromatin insulator CCCTC-binding factor (CTCF) is TGF-β inducible and facilitates TGF-β-mediated repression of TERT transcription via interactions with β2SP and SMAD3. This regulation was abrogated in TGF-β-defective mice and BWS, resulting in TERT overexpression. Imprinting of the IGF2/H19 locus and the CDKN1C/KCNQ1 locus on chromosome 11p15.5 is mediated by CTCF, and this regulation is lost in BWS, leading to aberrant overexpression of growth-promoting genes. Therefore, we propose that loss of CTCF-dependent imprinting of tumor-promoting genes, such as IGF2 and TERT, results from a defective TGF-β pathway and is responsible at least in part for BWS-associated tumorigenesis as well as sporadic human cancers that are frequently associated with SPTBN1 and SMAD3 mutations.
Insights
Beckwith-Wiedemann syndrome (BWS) involves epigenetic silencing of beta2-spectrin (β2SP), linked to tumor risk. Defective TGF-beta signaling impairs CTCF-mediated imprinting, causing overexpression of growth genes like IGF2 and TERT, driving tumorigenesis in BWS and cancers.
Area of Science:
- Genetics
- Cancer Biology
- Epigenetics
Background:
- Beckwith-Wiedemann syndrome (BWS) is a stem cell disorder with an 800-fold increased cancer risk.
- Epigenetic silencing of beta2-spectrin (SPTBN1), a SMAD adaptor for TGF-beta signaling, is linked to BWS.
- The role of TGF-beta deficiency in BWS-associated tumorigenesis remains unclear.
Purpose of the Study:
- To investigate the role of TGF-beta deficiency in BWS-associated neoplastic transformation.
- To explore the mechanism linking TGF-beta, beta2SP, CTCF, and tumor-promoting gene expression in BWS.
Main Methods:
- Utilized double-heterozygous Sptbn1+/- Smad3+/- mice with defective TGF-beta signaling.
- Analyzed gene expression (IGF2, TERT) in fibroblasts from BWS patients and TGF-beta-defective mice.
- Investigated the interaction between CTCF, beta2SP, SMAD3, and TGF-beta in regulating TERT transcription and imprinting.
Main Results:
- TGF-beta-defective mice developed tumors similar to BWS patients.
- Overexpression of IGF2 and TERT was observed in BWS and TGF-beta-defective models.
- CTCF, a TGF-beta-inducible factor, normally represses TERT via beta2SP and SMAD3; this regulation is lost in BWS and TGF-beta deficiency.
- Loss of CTCF-dependent imprinting at 11p15.5 in BWS leads to aberrant growth gene overexpression.
Conclusions:
- Defective TGF-beta signaling contributes to BWS-associated tumorigenesis.
- Loss of CTCF-mediated imprinting of IGF2 and TERT, due to impaired TGF-beta pathway, drives BWS tumorigenesis.
- This mechanism may also contribute to sporadic human cancers with SPTBN1 and SMAD3 mutations.
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