Skip to main content
Top
Published in: Head and Neck Pathology 3/2023

28-06-2023 | Sarcoma | Case Report

Biphenotypic Sinonasal Sarcoma with a Novel PAX7::PPARGC1 Fusion: Expanding the Spectrum of Gene Fusions Beyond the PAX3 Gene

Authors: Sanica Bhele, John S. A. Chrisinger, Nyssa Fox Farrell, Brian A. Van Tine, Constantine A. Raptis, Rebecca D. Chernock

Published in: Head and Neck Pathology | Issue 3/2023

Login to get access

Abstract

Biphenotypic sinonasal sarcoma (BSNS) is a rare low-grade malignancy occurring in the sinonasal tract that is characterized by dual neural and myogenic differentiation. Rearrangements involving the PAX3 gene, usually with MAML3, are a hallmark of this tumor type and their identification are useful for diagnosis. Rarely, a MAML3 rearrangement without associated PAX3 rearrangement has been described. Other gene fusions have not been previously reported. Herein, we report a 22 year-old woman with a BSNS harboring a novel gene fusion involving the PAX7 gene (specifically PAX7::PPARGC1A), which is a paralogue of PAX3. The histologic features of the tumor were typical with two exceptions: a lack of entrapment of surface respiratory mucosa and no hemangiopericytoma-like vasculature. Immunophenotypically, the tumor was notably negative for smooth muscle actin, which is usually positive in BSNS. However, the classic S100 protein-positive, SOX10-negative staining pattern was present. In addition, the tumor was positive for desmin and MyoD1 but negative for myogenin, a pattern that is common among BSNS with variant fusions. Awareness of the possibility of PAX7 gene fusions in BSNS is important as it may aid in the diagnosis of PAX3 fusion negative tumors.
Literature
1.
go back to reference Lewis JT, Oliveira AM, Nascimento AG, Schembri-Wismayer D, Moore EA, Olsen KD et al (2012) Low-grade sinonasal sarcoma with neural and myogenic features: a clinicopathologic analysis of 28 cases. Am J Surg Pathol 36:517–525CrossRefPubMed Lewis JT, Oliveira AM, Nascimento AG, Schembri-Wismayer D, Moore EA, Olsen KD et al (2012) Low-grade sinonasal sarcoma with neural and myogenic features: a clinicopathologic analysis of 28 cases. Am J Surg Pathol 36:517–525CrossRefPubMed
2.
go back to reference Organisation mondiale de la santé (2017) Centre international de recherche sur le cancer. WHO classification of head and neck tumours, 4th edn. International agency for research on cancer, Lyon Organisation mondiale de la santé (2017) Centre international de recherche sur le cancer. WHO classification of head and neck tumours, 4th edn. International agency for research on cancer, Lyon
3.
go back to reference Sethi S, Cody B, Farhat NA, Pool MD, Katabi N (2021) Biphenotypic sinonasal sarcoma: report of 3 cases with a review of literature. Hum Pathol NY 24:200491 Sethi S, Cody B, Farhat NA, Pool MD, Katabi N (2021) Biphenotypic sinonasal sarcoma: report of 3 cases with a review of literature. Hum Pathol NY 24:200491
4.
go back to reference Le Loarer F, Laffont S, Lesluyes T, Tirode F, Antonescu C, Baglin A-C et al (2019) Clinicopathologic and molecular features of a series of 41 biphenotypic sinonasal sarcomas expanding their molecular spectrum. Am J Surg Pathol 43:747–754CrossRefPubMedPubMedCentral Le Loarer F, Laffont S, Lesluyes T, Tirode F, Antonescu C, Baglin A-C et al (2019) Clinicopathologic and molecular features of a series of 41 biphenotypic sinonasal sarcomas expanding their molecular spectrum. Am J Surg Pathol 43:747–754CrossRefPubMedPubMedCentral
5.
go back to reference Carter CS, East EG, McHugh JB (2018) Biphenotypic sinonasal sarcoma: a review and update. Arch Pathol Lab Med 142:1196–1201CrossRefPubMed Carter CS, East EG, McHugh JB (2018) Biphenotypic sinonasal sarcoma: a review and update. Arch Pathol Lab Med 142:1196–1201CrossRefPubMed
6.
go back to reference Andreasen S, Bishop JA, Hellquist H, Hunt J, Kiss K, Rinaldo A et al (2018) Biphenotypic sinonasal sarcoma: demographics, clinicopathological characteristics, molecular features, and prognosis of a recently described entity. Virchows Arch Int J Pathol 473:615–626CrossRef Andreasen S, Bishop JA, Hellquist H, Hunt J, Kiss K, Rinaldo A et al (2018) Biphenotypic sinonasal sarcoma: demographics, clinicopathological characteristics, molecular features, and prognosis of a recently described entity. Virchows Arch Int J Pathol 473:615–626CrossRef
7.
go back to reference Bell D, Phan J, DeMonte F, Hanna EY (2022) High-grade transformation of low-grade biphenotypic sinonasal sarcoma: radiological, morphophenotypic variation and confirmatory molecular analysis. Ann Diagn Pathol 57:151889CrossRefPubMed Bell D, Phan J, DeMonte F, Hanna EY (2022) High-grade transformation of low-grade biphenotypic sinonasal sarcoma: radiological, morphophenotypic variation and confirmatory molecular analysis. Ann Diagn Pathol 57:151889CrossRefPubMed
8.
go back to reference Meyer A, Klubíčková N, Mosaieby E, Grossmann P, Kalmykova A, Koshyk O et al (2023) Biphenotypic sinonasal sarcoma with PAX3::MAML3 fusion transforming into high-grade rhabdomyosarcoma: report of an emerging rare phenomenon. Virchows Arch Int J Pathol 482:777–782CrossRef Meyer A, Klubíčková N, Mosaieby E, Grossmann P, Kalmykova A, Koshyk O et al (2023) Biphenotypic sinonasal sarcoma with PAX3::MAML3 fusion transforming into high-grade rhabdomyosarcoma: report of an emerging rare phenomenon. Virchows Arch Int J Pathol 482:777–782CrossRef
9.
go back to reference Hasnie S, Glenn C, Peterson JEG, El Rassi ET, McKinney KA (2022) High-grade biphenotypic sinonasal sarcoma: a case report. J Neurol Surg Rep 83:e105–e109CrossRefPubMedPubMedCentral Hasnie S, Glenn C, Peterson JEG, El Rassi ET, McKinney KA (2022) High-grade biphenotypic sinonasal sarcoma: a case report. J Neurol Surg Rep 83:e105–e109CrossRefPubMedPubMedCentral
10.
go back to reference Wang X, Bledsoe KL, Graham RP, Asmann YW, Viswanatha DS, Lewis JE et al (2014) Recurrent PAX3-MAML3 fusion in biphenotypic sinonasal sarcoma. Nat Genet 46:666–668CrossRefPubMedPubMedCentral Wang X, Bledsoe KL, Graham RP, Asmann YW, Viswanatha DS, Lewis JE et al (2014) Recurrent PAX3-MAML3 fusion in biphenotypic sinonasal sarcoma. Nat Genet 46:666–668CrossRefPubMedPubMedCentral
11.
go back to reference Wong WJ, Lauria A, Hornick JL, Xiao S, Fletcher JA, Marino-Enriquez A (2016) Alternate PAX3-FOXO1 oncogenic fusion in biphenotypic sinonasal sarcoma. Genes Chromosomes Cancer 55:25–29CrossRefPubMed Wong WJ, Lauria A, Hornick JL, Xiao S, Fletcher JA, Marino-Enriquez A (2016) Alternate PAX3-FOXO1 oncogenic fusion in biphenotypic sinonasal sarcoma. Genes Chromosomes Cancer 55:25–29CrossRefPubMed
12.
go back to reference Nichols MM, Alruwaii F, Chaaban M, Cheng Y-W, Griffith CC (2023) Biphenotypic sinonasal sarcoma with a Novel PAX3::FOXO6 fusion: a case report and review of the literature. Head Neck Pathol 17:259–264CrossRefPubMed Nichols MM, Alruwaii F, Chaaban M, Cheng Y-W, Griffith CC (2023) Biphenotypic sinonasal sarcoma with a Novel PAX3::FOXO6 fusion: a case report and review of the literature. Head Neck Pathol 17:259–264CrossRefPubMed
13.
go back to reference Huang S-C, Ghossein RA, Bishop JA, Zhang L, Chen T-C, Huang H-Y et al (2016) Novel PAX3-NCOA1 fusions in biphenotypic sinonasal sarcoma with focal rhabdomyoblastic differentiation. Am J Surg Pathol 40:51–59CrossRefPubMedPubMedCentral Huang S-C, Ghossein RA, Bishop JA, Zhang L, Chen T-C, Huang H-Y et al (2016) Novel PAX3-NCOA1 fusions in biphenotypic sinonasal sarcoma with focal rhabdomyoblastic differentiation. Am J Surg Pathol 40:51–59CrossRefPubMedPubMedCentral
14.
go back to reference Fritchie KJ, Jin L, Wang X, Graham RP, Torbenson MS, Lewis JE et al (2016) Fusion gene profile of biphenotypic sinonasal sarcoma: an analysis of 44 cases. Histopathology 69:930–936CrossRefPubMed Fritchie KJ, Jin L, Wang X, Graham RP, Torbenson MS, Lewis JE et al (2016) Fusion gene profile of biphenotypic sinonasal sarcoma: an analysis of 44 cases. Histopathology 69:930–936CrossRefPubMed
15.
go back to reference Gross J, Fritchie K (2020) Soft tissue special issue: biphenotypic sinonasal sarcoma: a review with emphasis on differential diagnosis. Head Neck Pathol 14:33–42CrossRefPubMedPubMedCentral Gross J, Fritchie K (2020) Soft tissue special issue: biphenotypic sinonasal sarcoma: a review with emphasis on differential diagnosis. Head Neck Pathol 14:33–42CrossRefPubMedPubMedCentral
16.
go back to reference Rooper LM, Huang S-C, Antonescu CR, Westra WH, Bishop JA (2016) Biphenotypic sinonasal sarcoma: an expanded immunoprofile including consistent nuclear β-catenin positivity and absence of SOX10 expression. Hum Pathol 55:44–50CrossRefPubMedPubMedCentral Rooper LM, Huang S-C, Antonescu CR, Westra WH, Bishop JA (2016) Biphenotypic sinonasal sarcoma: an expanded immunoprofile including consistent nuclear β-catenin positivity and absence of SOX10 expression. Hum Pathol 55:44–50CrossRefPubMedPubMedCentral
17.
go back to reference Siegfried A, Romary C, Escudié F, Nicaise Y, Grand D, Rochaix P et al (2018) RREB1-MKL2 fusion in biphenotypic “oropharyngeal” sarcoma: new entity or part of the spectrum of biphenotypic sinonasal sarcomas? Genes Chromosomes Cancer 57:203–210CrossRefPubMed Siegfried A, Romary C, Escudié F, Nicaise Y, Grand D, Rochaix P et al (2018) RREB1-MKL2 fusion in biphenotypic “oropharyngeal” sarcoma: new entity or part of the spectrum of biphenotypic sinonasal sarcomas? Genes Chromosomes Cancer 57:203–210CrossRefPubMed
18.
go back to reference Smith MH, Moynihan J (2023) Ectomesenchymal chondromyxoid tumor of the oral cavity: a report of 5 new cases with comprehensive review of the literature and clinicohistopathologic features. Oral Surg Oral Med Oral Pathol Oral Radiol 135:410–426CrossRefPubMed Smith MH, Moynihan J (2023) Ectomesenchymal chondromyxoid tumor of the oral cavity: a report of 5 new cases with comprehensive review of the literature and clinicohistopathologic features. Oral Surg Oral Med Oral Pathol Oral Radiol 135:410–426CrossRefPubMed
19.
go back to reference Buckingham M, Relaix F (2007) The role of Pax genes in the development of tissues and organs: Pax3 and Pax7 regulate muscle progenitor cell functions. Annu Rev Cell Dev Biol 23:645–673CrossRefPubMed Buckingham M, Relaix F (2007) The role of Pax genes in the development of tissues and organs: Pax3 and Pax7 regulate muscle progenitor cell functions. Annu Rev Cell Dev Biol 23:645–673CrossRefPubMed
21.
22.
go back to reference Zalc A, Rattenbach R, Auradé F, Cadot B, Relaix F (2015) Pax3 and Pax7 play essential safeguard functions against environmental stress-induced birth defects. Dev Cell 33:56–66CrossRefPubMed Zalc A, Rattenbach R, Auradé F, Cadot B, Relaix F (2015) Pax3 and Pax7 play essential safeguard functions against environmental stress-induced birth defects. Dev Cell 33:56–66CrossRefPubMed
23.
go back to reference Gu R, Zhang S, Saha SK, Ji Y, Reynolds K, McMahon M et al (2022) Single-cell transcriptomic signatures and gene regulatory networks modulated by wls in mammalian midline facial formation and clefts. Dev Camb Engl 149:dev200533 Gu R, Zhang S, Saha SK, Ji Y, Reynolds K, McMahon M et al (2022) Single-cell transcriptomic signatures and gene regulatory networks modulated by wls in mammalian midline facial formation and clefts. Dev Camb Engl 149:dev200533
24.
go back to reference Barr FG (2001) Gene fusions involving PAX and FOX family members in alveolar rhabdomyosarcoma. Oncogene 20:5736–5746CrossRefPubMed Barr FG (2001) Gene fusions involving PAX and FOX family members in alveolar rhabdomyosarcoma. Oncogene 20:5736–5746CrossRefPubMed
25.
go back to reference Georgantzoglou N, Green D, Stephen SA, Kerr DA, Linos K (2022) Biphenotypic sinonasal sarcoma with PAX7 expression. Int J Surg Pathol 30:642–645CrossRefPubMed Georgantzoglou N, Green D, Stephen SA, Kerr DA, Linos K (2022) Biphenotypic sinonasal sarcoma with PAX7 expression. Int J Surg Pathol 30:642–645CrossRefPubMed
26.
go back to reference Weiel JJ, Kokh D, Charville GW, Longacre TA (2022) PAX7 is a sensitive marker of skeletal muscle differentiation in rhabdomyosarcoma and tumors with rhabdomyosarcomatous differentiation in the female genital tract. Int J Gynecol Pathol Off J Int Soc Gynecol Pathol 41:235–243CrossRef Weiel JJ, Kokh D, Charville GW, Longacre TA (2022) PAX7 is a sensitive marker of skeletal muscle differentiation in rhabdomyosarcoma and tumors with rhabdomyosarcomatous differentiation in the female genital tract. Int J Gynecol Pathol Off J Int Soc Gynecol Pathol 41:235–243CrossRef
27.
go back to reference Charville GW, Varma S, Forgó E, Dumont SN, Zambrano E, Trent JC et al (2016) PAX7 expression in rhabdomyosarcoma, related soft tissue tumors, and small round blue cell neoplasms. Am J Surg Pathol 40:1305–1315CrossRefPubMed Charville GW, Varma S, Forgó E, Dumont SN, Zambrano E, Trent JC et al (2016) PAX7 expression in rhabdomyosarcoma, related soft tissue tumors, and small round blue cell neoplasms. Am J Surg Pathol 40:1305–1315CrossRefPubMed
28.
go back to reference Jannig PR, Dumesic PA, Spiegelman BM, Ruas JL (2022) Regulation and biology of PGC-1α. Cell 185:1444-1444e1CrossRefPubMed Jannig PR, Dumesic PA, Spiegelman BM, Ruas JL (2022) Regulation and biology of PGC-1α. Cell 185:1444-1444e1CrossRefPubMed
29.
go back to reference Agaimy A, Dermawan JK, Leong I, Stoehr R, Swanson D, Weinreb I et al (2022) Recurrent VGLL3 fusions define a distinctive subset of spindle cell rhabdomyosarcoma with an indolent clinical course and striking predilection for the head and neck. Genes Chromosomes Cancer 61:701–709CrossRefPubMed Agaimy A, Dermawan JK, Leong I, Stoehr R, Swanson D, Weinreb I et al (2022) Recurrent VGLL3 fusions define a distinctive subset of spindle cell rhabdomyosarcoma with an indolent clinical course and striking predilection for the head and neck. Genes Chromosomes Cancer 61:701–709CrossRefPubMed
30.
go back to reference Egashira S, Jinnin M, Ajino M, Shimozono N, Okamoto S, Tasaki Y et al (2017) Chronic sun exposure-related fusion oncogenes EGFR-PPARGC1A in cutaneous squamous cell carcinoma. Sci Rep 7:12654CrossRefPubMedPubMedCentral Egashira S, Jinnin M, Ajino M, Shimozono N, Okamoto S, Tasaki Y et al (2017) Chronic sun exposure-related fusion oncogenes EGFR-PPARGC1A in cutaneous squamous cell carcinoma. Sci Rep 7:12654CrossRefPubMedPubMedCentral
31.
go back to reference Mosquera JM, Sboner A, Zhang L, Kitabayashi N, Chen C-L, Sung YS et al (2013) Recurrent NCOA2 gene rearrangements in congenital/infantile spindle cell rhabdomyosarcoma. Genes Chromosomes Cancer 52:538–550CrossRefPubMed Mosquera JM, Sboner A, Zhang L, Kitabayashi N, Chen C-L, Sung YS et al (2013) Recurrent NCOA2 gene rearrangements in congenital/infantile spindle cell rhabdomyosarcoma. Genes Chromosomes Cancer 52:538–550CrossRefPubMed
32.
go back to reference Alaggio R, Zhang L, Sung Y-S, Huang S-C, Chen C-L, Bisogno G et al (2016) A molecular study of pediatric spindle and sclerosing rhabdomyosarcoma: identification of novel and recurrent VGLL2-related fusions in infantile cases. Am J Surg Pathol 40:224–235CrossRefPubMedPubMedCentral Alaggio R, Zhang L, Sung Y-S, Huang S-C, Chen C-L, Bisogno G et al (2016) A molecular study of pediatric spindle and sclerosing rhabdomyosarcoma: identification of novel and recurrent VGLL2-related fusions in infantile cases. Am J Surg Pathol 40:224–235CrossRefPubMedPubMedCentral
33.
go back to reference Organisation mondiale de la santé (2020) Centre international de recherche sur le cancer. Soft tissue and bone tumours, 5th edn. OMS, Geneva Organisation mondiale de la santé (2020) Centre international de recherche sur le cancer. Soft tissue and bone tumours, 5th edn. OMS, Geneva
34.
go back to reference Agaram NP, Chen C-L, Zhang L, LaQuaglia MP, Wexler L, Antonescu CR (2014) Recurrent MYOD1 mutations in pediatric and adult sclerosing and spindle cell rhabdomyosarcomas: evidence for a common pathogenesis. Genes Chromosomes Cancer 53:779–787CrossRefPubMedPubMedCentral Agaram NP, Chen C-L, Zhang L, LaQuaglia MP, Wexler L, Antonescu CR (2014) Recurrent MYOD1 mutations in pediatric and adult sclerosing and spindle cell rhabdomyosarcomas: evidence for a common pathogenesis. Genes Chromosomes Cancer 53:779–787CrossRefPubMedPubMedCentral
35.
go back to reference Rekhi B, Upadhyay P, Ramteke MP, Dutt A (2016) MYOD1 (L122R) mutations are associated with spindle cell and sclerosing rhabdomyosarcomas with aggressive clinical outcomes. Mod Pathol 29:1532–1540CrossRefPubMedPubMedCentral Rekhi B, Upadhyay P, Ramteke MP, Dutt A (2016) MYOD1 (L122R) mutations are associated with spindle cell and sclerosing rhabdomyosarcomas with aggressive clinical outcomes. Mod Pathol 29:1532–1540CrossRefPubMedPubMedCentral
36.
go back to reference Agaram NP, LaQuaglia MP, Alaggio R, Zhang L, Fujisawa Y, Ladanyi M et al (2019) MYOD1-mutant spindle cell and sclerosing rhabdomyosarcoma: an aggressive subtype irrespective of age. a reappraisal for molecular classification and risk stratification. Mod Pathol 32:27–36CrossRefPubMed Agaram NP, LaQuaglia MP, Alaggio R, Zhang L, Fujisawa Y, Ladanyi M et al (2019) MYOD1-mutant spindle cell and sclerosing rhabdomyosarcoma: an aggressive subtype irrespective of age. a reappraisal for molecular classification and risk stratification. Mod Pathol 32:27–36CrossRefPubMed
37.
go back to reference Jo VY, Mariño-Enríquez A, Fletcher CDM, Hornick JL (2018) Expression of PAX3 distinguishes biphenotypic sinonasal sarcoma from histologic mimics. Am J Surg Pathol 42:1275–1285CrossRefPubMed Jo VY, Mariño-Enríquez A, Fletcher CDM, Hornick JL (2018) Expression of PAX3 distinguishes biphenotypic sinonasal sarcoma from histologic mimics. Am J Surg Pathol 42:1275–1285CrossRefPubMed
Metadata
Title
Biphenotypic Sinonasal Sarcoma with a Novel PAX7::PPARGC1 Fusion: Expanding the Spectrum of Gene Fusions Beyond the PAX3 Gene
Authors
Sanica Bhele
John S. A. Chrisinger
Nyssa Fox Farrell
Brian A. Van Tine
Constantine A. Raptis
Rebecca D. Chernock
Publication date
28-06-2023
Publisher
Springer US
Published in
Head and Neck Pathology / Issue 3/2023
Electronic ISSN: 1936-0568
DOI
https://doi.org/10.1007/s12105-023-01566-6

Other articles of this Issue 3/2023

Head and Neck Pathology 3/2023 Go to the issue