Promoter methylation inhibits expression of tumor suppressor KIBRA in human clear cell renal cell carcinoma
Abstract Background KIBRA has been suggested as a key regulator of the Hippo signaling pathway, regulating organ size, cell contact inhibition, tissue regeneration as well as tumorigenesis and cystogenesis. We recently reported that human KIBRA expression depends on a complex alternative CpG-rich pr...
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doaj-f3d95ddc68aa4b5aa909c63e649e94db2020-11-25T01:44:55ZengBMCClinical Epigenetics1868-70751868-70832017-10-019111010.1186/s13148-017-0415-6Promoter methylation inhibits expression of tumor suppressor KIBRA in human clear cell renal cell carcinomaKatrin Schelleckes0Boris Schmitz1Giuliano Ciarimboli2Malte Lenders3Hermann J. Pavenstädt4Edwin Herrmann5Stefan-Martin Brand6Eva Brand7Internal Medicine D, Nephrology, Hypertension and Rheumatology, University Hospital MuensterInstitute of Sports Medicine, Molecular Genetics of Cardiovascular Disease, University Hospital MuensterInternal Medicine D, Nephrology, Hypertension and Rheumatology, University Hospital MuensterInternal Medicine D, Nephrology, Hypertension and Rheumatology, University Hospital MuensterInternal Medicine D, Nephrology, Hypertension and Rheumatology, University Hospital MuensterClinic for Urology, University Hospital MuensterInstitute of Sports Medicine, Molecular Genetics of Cardiovascular Disease, University Hospital MuensterInternal Medicine D, Nephrology, Hypertension and Rheumatology, University Hospital MuensterAbstract Background KIBRA has been suggested as a key regulator of the Hippo signaling pathway, regulating organ size, cell contact inhibition, tissue regeneration as well as tumorigenesis and cystogenesis. We recently reported that human KIBRA expression depends on a complex alternative CpG-rich promoter system. Our current study aimed at the identification of epigenetic mechanisms associated with alterations in KIBRA expression regulation. Results We identified two separated methylation-sensitive CpG islands located to independent KIBRA promoter regions. In vitro promoter methylation analysis using human neuroblastoma (SH-SY5Y) and immortalized kidney cells (IHKE) revealed that total promoter methylation by CpG methyltransferase SssI resulted in complete abrogation of transcriptional activity (p < 0.001), while partial methylation by HpaII selectively repressed KIBRA core promoter activity in kidney cells (p < 0.001). Cell culture-based experiments demonstrated that 5-azacitidine may be used to restore KIBRA mRNA and protein levels, while overexpression of transcription factor SP1 also induced KIBRA upregulation (all p < 0.001). Furthermore, SP1 transactivation of KIBRA transcription was largely prevented by methylation of KIBRA regulatory elements (p < 0.001). Analysis of human kidney biopsies revealed that KIBRA promoter methylation was associated with human clear cell renal cell carcinoma (ccRCC; n = 8 vs 16 controls, OR = 1.921, [CI 95% = 1.369–2.695]). The subsequent determination of KIBRA mRNA levels by real-time PCR in a larger patient sample confirmed significantly reduced KIBRA expression in ccRCC (n = 32) compared to non-neoplastic human kidney tissue samples (controls, n = 32, p < 0.001). Conclusion We conclude that epigenetic downregulation of tumor suppressor KIBRA may involve impaired SP1 binding to functional methylation-sensitive KIBRA promoter elements as observed in human kidney clear cell carcinoma. Our findings provide a pathophysiological basis for future studies on altered KIBRA regulation in clinical disease entities such as renal cancer.http://link.springer.com/article/10.1186/s13148-017-0415-6EpigeneticsRenal cancerHippo pathwayMethylationTumorWWC1 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Katrin Schelleckes Boris Schmitz Giuliano Ciarimboli Malte Lenders Hermann J. Pavenstädt Edwin Herrmann Stefan-Martin Brand Eva Brand |
spellingShingle |
Katrin Schelleckes Boris Schmitz Giuliano Ciarimboli Malte Lenders Hermann J. Pavenstädt Edwin Herrmann Stefan-Martin Brand Eva Brand Promoter methylation inhibits expression of tumor suppressor KIBRA in human clear cell renal cell carcinoma Clinical Epigenetics Epigenetics Renal cancer Hippo pathway Methylation Tumor WWC1 |
author_facet |
Katrin Schelleckes Boris Schmitz Giuliano Ciarimboli Malte Lenders Hermann J. Pavenstädt Edwin Herrmann Stefan-Martin Brand Eva Brand |
author_sort |
Katrin Schelleckes |
title |
Promoter methylation inhibits expression of tumor suppressor KIBRA in human clear cell renal cell carcinoma |
title_short |
Promoter methylation inhibits expression of tumor suppressor KIBRA in human clear cell renal cell carcinoma |
title_full |
Promoter methylation inhibits expression of tumor suppressor KIBRA in human clear cell renal cell carcinoma |
title_fullStr |
Promoter methylation inhibits expression of tumor suppressor KIBRA in human clear cell renal cell carcinoma |
title_full_unstemmed |
Promoter methylation inhibits expression of tumor suppressor KIBRA in human clear cell renal cell carcinoma |
title_sort |
promoter methylation inhibits expression of tumor suppressor kibra in human clear cell renal cell carcinoma |
publisher |
BMC |
series |
Clinical Epigenetics |
issn |
1868-7075 1868-7083 |
publishDate |
2017-10-01 |
description |
Abstract Background KIBRA has been suggested as a key regulator of the Hippo signaling pathway, regulating organ size, cell contact inhibition, tissue regeneration as well as tumorigenesis and cystogenesis. We recently reported that human KIBRA expression depends on a complex alternative CpG-rich promoter system. Our current study aimed at the identification of epigenetic mechanisms associated with alterations in KIBRA expression regulation. Results We identified two separated methylation-sensitive CpG islands located to independent KIBRA promoter regions. In vitro promoter methylation analysis using human neuroblastoma (SH-SY5Y) and immortalized kidney cells (IHKE) revealed that total promoter methylation by CpG methyltransferase SssI resulted in complete abrogation of transcriptional activity (p < 0.001), while partial methylation by HpaII selectively repressed KIBRA core promoter activity in kidney cells (p < 0.001). Cell culture-based experiments demonstrated that 5-azacitidine may be used to restore KIBRA mRNA and protein levels, while overexpression of transcription factor SP1 also induced KIBRA upregulation (all p < 0.001). Furthermore, SP1 transactivation of KIBRA transcription was largely prevented by methylation of KIBRA regulatory elements (p < 0.001). Analysis of human kidney biopsies revealed that KIBRA promoter methylation was associated with human clear cell renal cell carcinoma (ccRCC; n = 8 vs 16 controls, OR = 1.921, [CI 95% = 1.369–2.695]). The subsequent determination of KIBRA mRNA levels by real-time PCR in a larger patient sample confirmed significantly reduced KIBRA expression in ccRCC (n = 32) compared to non-neoplastic human kidney tissue samples (controls, n = 32, p < 0.001). Conclusion We conclude that epigenetic downregulation of tumor suppressor KIBRA may involve impaired SP1 binding to functional methylation-sensitive KIBRA promoter elements as observed in human kidney clear cell carcinoma. Our findings provide a pathophysiological basis for future studies on altered KIBRA regulation in clinical disease entities such as renal cancer. |
topic |
Epigenetics Renal cancer Hippo pathway Methylation Tumor WWC1 |
url |
http://link.springer.com/article/10.1186/s13148-017-0415-6 |
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