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Distinctive mechanisms underlie the loss of SMARCB1 protein expression in renal medullary carcinoma: morphologic and molecular analysis of 20 cases

Renal medullary carcinoma is a rare but highly aggressive type of renal cancer occurring in patients with sickle cell trait or rarely with other hemoglobinopathies. Loss of SMARCB1 protein expression, a core subunit of the switch/sucrose nonfermentable (SWI/SNF) chromatin remodeling complex, has eme...

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Autores principales: Jia, Liwei, Carlo, Maria I., Khan, Hina, Nanjangud, Gouri J., Rana, Satshil, Cimera, Robert, Zhang, Yanming, Hakimi, A. Ari, Verma, Amit K., Al-Ahmadie, Hikmat A., Fine, Samson W., Gopalan, Anuradha, Sirintrapun, S. Joseph, Tickoo, Satish K., Reuter, Victor E., Gartrell, Benjamin A., Chen, Ying-Bei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6731129/
https://www.ncbi.nlm.nih.gov/pubmed/30980040
http://dx.doi.org/10.1038/s41379-019-0273-1
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author Jia, Liwei
Carlo, Maria I.
Khan, Hina
Nanjangud, Gouri J.
Rana, Satshil
Cimera, Robert
Zhang, Yanming
Hakimi, A. Ari
Verma, Amit K.
Al-Ahmadie, Hikmat A.
Fine, Samson W.
Gopalan, Anuradha
Sirintrapun, S. Joseph
Tickoo, Satish K.
Reuter, Victor E.
Gartrell, Benjamin A.
Chen, Ying-Bei
author_facet Jia, Liwei
Carlo, Maria I.
Khan, Hina
Nanjangud, Gouri J.
Rana, Satshil
Cimera, Robert
Zhang, Yanming
Hakimi, A. Ari
Verma, Amit K.
Al-Ahmadie, Hikmat A.
Fine, Samson W.
Gopalan, Anuradha
Sirintrapun, S. Joseph
Tickoo, Satish K.
Reuter, Victor E.
Gartrell, Benjamin A.
Chen, Ying-Bei
author_sort Jia, Liwei
collection PubMed
description Renal medullary carcinoma is a rare but highly aggressive type of renal cancer occurring in patients with sickle cell trait or rarely with other hemoglobinopathies. Loss of SMARCB1 protein expression, a core subunit of the switch/sucrose nonfermentable (SWI/SNF) chromatin remodeling complex, has emerged as a key diagnostic feature of these tumors. However, the molecular mechanism underlying this loss remains unclear. We retrospectively identified 20 patients diagnosed with renal medullary carcinoma at two institutions from 1996 to 2017. All patients were confirmed to have sickle cell trait, and all tumors exhibited a loss of SMARCB1 protein expression by immunohistochemistry. The status of SMARCB1 locus was examined by fluorescence in situ hybridization (FISH) using 3-color probes, and somatic alterations were detected by targeted next-generation sequencing platforms. FISH analysis of all 20 cases revealed 11 (55%) with concurrent hemizygous loss and translocation of SMARCB1, 6 (30%) with homozygous loss of SMARCB1, and 3 (15%) without structural or copy number alterations of SMARCB1 despite protein loss. Targeted sequencing revealed a pathogenic somatic mutation of SMARCB1 in one of these 3 cases that were negative by FISH. Tumors in the 3 subsets with different FISH findings largely exhibited similar clinicopathologic features, however, homozygous SMARCB1 deletion was found to show a significant association with the solid growth pattern, whereas tumors dominated by reticular/cribriform growth were enriched for SMARCB1 translocation. Taken together, we demonstrate that different molecular mechanisms underlie the loss of SMARCB1 expression in renal medullary carcinoma. Biallelic inactivation of SMARCB1 occurs in a large majority of cases either via concurrent hemizygous loss and translocation disrupting SMARCB1 or by homozygous loss.
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spelling pubmed-67311292019-10-12 Distinctive mechanisms underlie the loss of SMARCB1 protein expression in renal medullary carcinoma: morphologic and molecular analysis of 20 cases Jia, Liwei Carlo, Maria I. Khan, Hina Nanjangud, Gouri J. Rana, Satshil Cimera, Robert Zhang, Yanming Hakimi, A. Ari Verma, Amit K. Al-Ahmadie, Hikmat A. Fine, Samson W. Gopalan, Anuradha Sirintrapun, S. Joseph Tickoo, Satish K. Reuter, Victor E. Gartrell, Benjamin A. Chen, Ying-Bei Mod Pathol Article Renal medullary carcinoma is a rare but highly aggressive type of renal cancer occurring in patients with sickle cell trait or rarely with other hemoglobinopathies. Loss of SMARCB1 protein expression, a core subunit of the switch/sucrose nonfermentable (SWI/SNF) chromatin remodeling complex, has emerged as a key diagnostic feature of these tumors. However, the molecular mechanism underlying this loss remains unclear. We retrospectively identified 20 patients diagnosed with renal medullary carcinoma at two institutions from 1996 to 2017. All patients were confirmed to have sickle cell trait, and all tumors exhibited a loss of SMARCB1 protein expression by immunohistochemistry. The status of SMARCB1 locus was examined by fluorescence in situ hybridization (FISH) using 3-color probes, and somatic alterations were detected by targeted next-generation sequencing platforms. FISH analysis of all 20 cases revealed 11 (55%) with concurrent hemizygous loss and translocation of SMARCB1, 6 (30%) with homozygous loss of SMARCB1, and 3 (15%) without structural or copy number alterations of SMARCB1 despite protein loss. Targeted sequencing revealed a pathogenic somatic mutation of SMARCB1 in one of these 3 cases that were negative by FISH. Tumors in the 3 subsets with different FISH findings largely exhibited similar clinicopathologic features, however, homozygous SMARCB1 deletion was found to show a significant association with the solid growth pattern, whereas tumors dominated by reticular/cribriform growth were enriched for SMARCB1 translocation. Taken together, we demonstrate that different molecular mechanisms underlie the loss of SMARCB1 expression in renal medullary carcinoma. Biallelic inactivation of SMARCB1 occurs in a large majority of cases either via concurrent hemizygous loss and translocation disrupting SMARCB1 or by homozygous loss. 2019-04-12 2019-09 /pmc/articles/PMC6731129/ /pubmed/30980040 http://dx.doi.org/10.1038/s41379-019-0273-1 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Jia, Liwei
Carlo, Maria I.
Khan, Hina
Nanjangud, Gouri J.
Rana, Satshil
Cimera, Robert
Zhang, Yanming
Hakimi, A. Ari
Verma, Amit K.
Al-Ahmadie, Hikmat A.
Fine, Samson W.
Gopalan, Anuradha
Sirintrapun, S. Joseph
Tickoo, Satish K.
Reuter, Victor E.
Gartrell, Benjamin A.
Chen, Ying-Bei
Distinctive mechanisms underlie the loss of SMARCB1 protein expression in renal medullary carcinoma: morphologic and molecular analysis of 20 cases
title Distinctive mechanisms underlie the loss of SMARCB1 protein expression in renal medullary carcinoma: morphologic and molecular analysis of 20 cases
title_full Distinctive mechanisms underlie the loss of SMARCB1 protein expression in renal medullary carcinoma: morphologic and molecular analysis of 20 cases
title_fullStr Distinctive mechanisms underlie the loss of SMARCB1 protein expression in renal medullary carcinoma: morphologic and molecular analysis of 20 cases
title_full_unstemmed Distinctive mechanisms underlie the loss of SMARCB1 protein expression in renal medullary carcinoma: morphologic and molecular analysis of 20 cases
title_short Distinctive mechanisms underlie the loss of SMARCB1 protein expression in renal medullary carcinoma: morphologic and molecular analysis of 20 cases
title_sort distinctive mechanisms underlie the loss of smarcb1 protein expression in renal medullary carcinoma: morphologic and molecular analysis of 20 cases
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6731129/
https://www.ncbi.nlm.nih.gov/pubmed/30980040
http://dx.doi.org/10.1038/s41379-019-0273-1
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