Synovial Sarcoma Is a Stem Cell Malignancy

Author:

Naka Norifumi12,Takenaka Satoshi23,Araki Nobuhito1,Miwa Toshitada4,Hashimoto Nobuyuki3,Yoshioka Kiyoko2,Joyama Susumu1,Hamada Ken-ichiro1,Tsukamoto Yoshitane5,Tomita Yasuhiko6,Ueda Takafumi7,Yoshikawa Hideki3,Itoh Kazuyuki2

Affiliation:

1. Musculoskeletal Oncology Service, Osaka Medical Center for Cancer and Cardiovascular Diseases, Osaka, Japan

2. Departments of Biology, Osaka Medical Center for Cancer and Cardiovascular Diseases, Osaka, Japan

3. Department of Orthopedics, Osaka University Graduate School of Medicine, Osaka, Japan

4. Department of Orthopedic Surgery, Osaka Koseinenkin Hospital, Osaka, Japan

5. Department of Surgical Pathology, Hyogo College of Medicine, Nishinomiya, Japan

6. Pathology, Osaka Medical Center for Cancer and Cardiovascular Diseases, Osaka, Japan

7. Department of Orthopedic Surgery, Osaka National Hospital, Kinki-Block Comprehensive Cancer Center, Osaka, Japan

Abstract

Abstract Synovial sarcoma (SS) is a malignant soft tissue tumor characterized by its unique t(X;18)(p11;q11) chromosomal translocation leading to the formation of the SS18-SSX fusion gene. The resulting fusion protein product is considered to play as an aberrant transcription factor and transform target cells by perturbing their gene expression program. However, the cellular origin of SS is highly debated. We herein established two novel human SS cell lines, named Yamato-SS and Aska-SS, and investigated their biological properties. We found the self-renewal ability of these cells to generate sarcospheres, to form tumors in serial xenotransplantation and reconstitute the tumor phenotypes without fractionation by any surface markers. Both SS cells as well as clinical tissue specimens from 15 patients expressed the marker genes-associated stem cell identity, Oct3/4, Nanog, and Sox2. We also found that both SS cells displayed limited differentiation potentials for mesenchymal lineages into osteocytes and chondrocytes albeit with the expression of early mesenchymal and hematopoietic lineage genes. Upon SS18-SSX silencing with sequence-specific siRNAs, these SS cells exhibited morphological transition from spherical growth in suspension to adherent growth in monolayer, additional expression of later mesenchymal and hematopoietic lineage genes, and broader differentiation potentials into osteocytes, chondrocytes, adipocytes, and macrophages in appropriate differentiation cocktails. Collectively, these data suggest that a human multipotent mesenchymal stem cell can serve as a cell of origin for SS and SS is a stem cell malignancy resulting from dysregulation of self-renewal and differentiation capacities driven by SS18-SSX fusion protein.

Funder

Japan Orthopedics and Traumatology Foundation, Inc.

Osaka Cancer Research Foundation

Osaka Foundation for the Prevention of Cancer and Cardiovascular Diseases

Program for Promotion of Fundamental Studies in Health Sciences of the National Institute of Biomedical Innovation

Innovation, Foundation for Promotion of Cancer Research in Japan

Ministry of Health, Labor and Welfare, Japan

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,Molecular Medicine

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