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BAP1 forms a trimer with HMGB1 and HDAC1 that modulates gene × environment interaction with asbestos
by
Giorgi, Carlotta
, Barbour, Haithem
, Morris, Paul
, Patergnani, Simone
, Pinton, Paolo
, Takanishi, Yasutaka
, Carbone, Michele
, Kricek, Franz
, Tanji, Mika
, Xu, Ronghui
, Gaudino, Giovanni
, Bai, Fang
, Minaai, Michael
, Pass, Harvey I.
, Onuchic, Jose N.
, Novelli, Flavia
, Yang, Haining
, Wang, Qian
, Pastorino, Sandra
, Haglund, Ellinor
, Bononi, Angela
, Suarez, Joelle S.
, Sakamoto, Greg
in
Acetylation
/ Animals
/ Asbestos
/ Biological Sciences
/ Biomarkers, Tumor - metabolism
/ Cancer
/ Carcinogenesis
/ Carcinogens
/ Cell Nucleus - metabolism
/ Female
/ Gene-Environment Interaction
/ Genetics
/ Germ-Line Mutation
/ Heterozygote
/ Histone deacetylase
/ Histone Deacetylase 1 - chemistry
/ Histone Deacetylase 1 - genetics
/ HMGB1 protein
/ HMGB1 Protein - chemistry
/ HMGB1 Protein - genetics
/ Incidence
/ Inflammation
/ Male
/ Mesothelioma
/ Mesothelioma - metabolism
/ Mice
/ Mutation
/ Prognosis
/ Protein Binding
/ Proteins
/ Serum levels
/ Trimers
/ Tumor Suppressor Proteins - chemistry
/ Tumor Suppressor Proteins - metabolism
/ Ubiquitin
/ Ubiquitin - chemistry
/ Ubiquitin Thiolesterase - chemistry
/ Ubiquitin Thiolesterase - metabolism
2021
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BAP1 forms a trimer with HMGB1 and HDAC1 that modulates gene × environment interaction with asbestos
by
Giorgi, Carlotta
, Barbour, Haithem
, Morris, Paul
, Patergnani, Simone
, Pinton, Paolo
, Takanishi, Yasutaka
, Carbone, Michele
, Kricek, Franz
, Tanji, Mika
, Xu, Ronghui
, Gaudino, Giovanni
, Bai, Fang
, Minaai, Michael
, Pass, Harvey I.
, Onuchic, Jose N.
, Novelli, Flavia
, Yang, Haining
, Wang, Qian
, Pastorino, Sandra
, Haglund, Ellinor
, Bononi, Angela
, Suarez, Joelle S.
, Sakamoto, Greg
in
Acetylation
/ Animals
/ Asbestos
/ Biological Sciences
/ Biomarkers, Tumor - metabolism
/ Cancer
/ Carcinogenesis
/ Carcinogens
/ Cell Nucleus - metabolism
/ Female
/ Gene-Environment Interaction
/ Genetics
/ Germ-Line Mutation
/ Heterozygote
/ Histone deacetylase
/ Histone Deacetylase 1 - chemistry
/ Histone Deacetylase 1 - genetics
/ HMGB1 protein
/ HMGB1 Protein - chemistry
/ HMGB1 Protein - genetics
/ Incidence
/ Inflammation
/ Male
/ Mesothelioma
/ Mesothelioma - metabolism
/ Mice
/ Mutation
/ Prognosis
/ Protein Binding
/ Proteins
/ Serum levels
/ Trimers
/ Tumor Suppressor Proteins - chemistry
/ Tumor Suppressor Proteins - metabolism
/ Ubiquitin
/ Ubiquitin - chemistry
/ Ubiquitin Thiolesterase - chemistry
/ Ubiquitin Thiolesterase - metabolism
2021
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BAP1 forms a trimer with HMGB1 and HDAC1 that modulates gene × environment interaction with asbestos
by
Giorgi, Carlotta
, Barbour, Haithem
, Morris, Paul
, Patergnani, Simone
, Pinton, Paolo
, Takanishi, Yasutaka
, Carbone, Michele
, Kricek, Franz
, Tanji, Mika
, Xu, Ronghui
, Gaudino, Giovanni
, Bai, Fang
, Minaai, Michael
, Pass, Harvey I.
, Onuchic, Jose N.
, Novelli, Flavia
, Yang, Haining
, Wang, Qian
, Pastorino, Sandra
, Haglund, Ellinor
, Bononi, Angela
, Suarez, Joelle S.
, Sakamoto, Greg
in
Acetylation
/ Animals
/ Asbestos
/ Biological Sciences
/ Biomarkers, Tumor - metabolism
/ Cancer
/ Carcinogenesis
/ Carcinogens
/ Cell Nucleus - metabolism
/ Female
/ Gene-Environment Interaction
/ Genetics
/ Germ-Line Mutation
/ Heterozygote
/ Histone deacetylase
/ Histone Deacetylase 1 - chemistry
/ Histone Deacetylase 1 - genetics
/ HMGB1 protein
/ HMGB1 Protein - chemistry
/ HMGB1 Protein - genetics
/ Incidence
/ Inflammation
/ Male
/ Mesothelioma
/ Mesothelioma - metabolism
/ Mice
/ Mutation
/ Prognosis
/ Protein Binding
/ Proteins
/ Serum levels
/ Trimers
/ Tumor Suppressor Proteins - chemistry
/ Tumor Suppressor Proteins - metabolism
/ Ubiquitin
/ Ubiquitin - chemistry
/ Ubiquitin Thiolesterase - chemistry
/ Ubiquitin Thiolesterase - metabolism
2021
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BAP1 forms a trimer with HMGB1 and HDAC1 that modulates gene × environment interaction with asbestos
Journal Article
BAP1 forms a trimer with HMGB1 and HDAC1 that modulates gene × environment interaction with asbestos
2021
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Overview
Carriers of heterozygous germline BAP1 mutations (BAP1
+/−) are affected by the “BAP1 cancer syndrome.” Although they can develop almost any cancer type, they are unusually susceptible to asbestos carcinogenesis and mesothelioma. Here we investigate why among all carcinogens, BAP1 mutations cooperate with asbestos. Asbestos carcinogenesis and mesothelioma have been linked to a chronic inflammatory process promoted by the extracellular release of the high-mobility group box 1 protein (HMGB1). We report that BAP1
+/− cells secrete increased amounts of HMGB1, and that BAP1
+/− carriers have detectable serum levels of acetylated HMGB1 that further increase when they develop mesothelioma. We linked these findings to our discovery that BAP1 forms a trimeric protein complex with HMGB1 and with histone deacetylase 1 (HDAC1) that modulates HMGB1 acetylation and its release. Reduced BAP1 levels caused increased ubiquitylation and degradation of HDAC1, leading to increased acetylation of HMGB1 and its active secretion that in turn promoted mesothelial cell transformation.
Publisher
National Academy of Sciences
Subject
/ Animals
/ Asbestos
/ Biomarkers, Tumor - metabolism
/ Cancer
/ Female
/ Gene-Environment Interaction
/ Genetics
/ Histone Deacetylase 1 - chemistry
/ Histone Deacetylase 1 - genetics
/ Male
/ Mice
/ Mutation
/ Proteins
/ Trimers
/ Tumor Suppressor Proteins - chemistry
/ Tumor Suppressor Proteins - metabolism
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