TY - JOUR
T1 - The Accumulation of Heparan Sulfate S-Domains in Kidney Transthyretin Deposits Accelerates Fibril Formation and Promotes Cytotoxicity
AU - Kameyama, Hirokazu
AU - Uchimura, Kenji
AU - Yamashita, Taro
AU - Kuwabara, Kaori
AU - Mizuguchi, Mineyuki
AU - Hung, Shang Cheng
AU - Okuhira, Keiichiro
AU - Masuda, Tomohiro
AU - Kosugi, Tomoki
AU - Ohgita, Takashi
AU - Saito, Hiroyuki
AU - Ando, Yukio
AU - Nishitsuji, Kazuchika
N1 - Publisher Copyright:
© 2019 American Society for Investigative Pathology
PY - 2019/2
Y1 - 2019/2
N2 - The highly sulfated domains of heparan sulfate (HS), alias HS S-domains, are made up of repeated trisulfated disaccharide units [iduronic acid (2S)-glucosamine (NS, 6S)] and are selectively remodeled by extracellular endoglucosamine 6-sulfatases (Sulfs). Although HS S-domains are critical for signal transduction of several growth factors, their roles in amyloidoses are not yet fully understood. Herein, we found HS S-domains in the kidney of a patient with transthyretin amyloidosis. In in vitro assays with cells stably expressing human Sulfs, heparin, a structural analog of HS S-domains, promoted aggregation of transthyretin in an HS S-domain–dependent manner. Interactions of cells with transthyretin fibrils and cytotoxicity of these fibrils also depended on HS S-domains at the cell surface. Furthermore, glypican-5, encoded by the susceptibility gene for nephrotic syndrome GPC5, was found to be accumulated in the transthyretin amyloidosis kidney. Our study, thus, provides a novel insight into the pathologic roles of HS S-domains in amyloidoses, and we propose that enzymatic remodeling of HS chains by Sulfs may offer an effective approach to inhibiting formation and cytotoxicity of amyloid fibrils.
AB - The highly sulfated domains of heparan sulfate (HS), alias HS S-domains, are made up of repeated trisulfated disaccharide units [iduronic acid (2S)-glucosamine (NS, 6S)] and are selectively remodeled by extracellular endoglucosamine 6-sulfatases (Sulfs). Although HS S-domains are critical for signal transduction of several growth factors, their roles in amyloidoses are not yet fully understood. Herein, we found HS S-domains in the kidney of a patient with transthyretin amyloidosis. In in vitro assays with cells stably expressing human Sulfs, heparin, a structural analog of HS S-domains, promoted aggregation of transthyretin in an HS S-domain–dependent manner. Interactions of cells with transthyretin fibrils and cytotoxicity of these fibrils also depended on HS S-domains at the cell surface. Furthermore, glypican-5, encoded by the susceptibility gene for nephrotic syndrome GPC5, was found to be accumulated in the transthyretin amyloidosis kidney. Our study, thus, provides a novel insight into the pathologic roles of HS S-domains in amyloidoses, and we propose that enzymatic remodeling of HS chains by Sulfs may offer an effective approach to inhibiting formation and cytotoxicity of amyloid fibrils.
UR - http://www.scopus.com/inward/record.url?scp=85060102511&partnerID=8YFLogxK
U2 - 10.1016/j.ajpath.2018.09.015
DO - 10.1016/j.ajpath.2018.09.015
M3 - 学術論文
C2 - 30414409
AN - SCOPUS:85060102511
SN - 0002-9440
VL - 189
SP - 308
EP - 319
JO - American Journal of Pathology
JF - American Journal of Pathology
IS - 2
ER -