三次リンパ組織における代謝微小環境の解明~グルタチオンが鍵となる免疫代謝制御機構~

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2025-08-21 京都⼤学

京都大学の柳田素子教授、杉浦悠毅特定准教授、荒井宏之研究生らの研究グループは、腎臓に形成される三次リンパ組織(TLS)の代謝環境を解析し、グルタチオンがTLS形成に必須であることを明らかにしました。イメージング質量分析やメタボローム解析、多重免疫染色、薬理学的阻害実験を組み合わせた結果、TLS内部には抗酸化物質グルタチオンと酸化ストレスがともに高度に集積していることを発見。また、グルタチオン合成経路を阻害すると生体内でTLS形成が抑制されることを示しました。さらに、腎TLSを持つマウスやヒトでは尿中グルタチオン濃度が有意に上昇し、IgA腎症患者で非侵襲的バイオマーカーとして機能する可能性も確認(特許出願中)。本成果は、TLSを標的とした免疫代謝的介入が腎疾患治療に新たな展望を開くと期待されます。研究成果は2025年8月8日、『Journal of the American Society of Nephrology』に掲載されました。

三次リンパ組織における代謝微小環境の解明~グルタチオンが鍵となる免疫代謝制御機構~

<関連情報>

システイン/グルタミン酸トランスポーターを介したグルタチオンの合成は、腎臓における三次リンパ組織の形成を促進する Glutathione Synthesis via the Cystine/Glutamate Transporter Promotes the Formation of Tertiary Lymphoid Structures in the Kidney

Arai, Hiroyuki; Sugiura, Yuki; Yamamoto, Shinya; Yoshikawa, Takahisa; Matsuoka, Yuta; Maeda, Rae; Neyama, Hiroyuki; Kamimatsuse, Ryo; Goto, Shima; Taniguchi, Keisuke; Toriu, Naoya; Kondo, Makiko; Sato, Yuki; Fukuma, Shingo; Yanagita, Motoko
Journal of the American Society of Nephrology  Published:August 08, 2025
DOI:10.1681/ASN.0000000825

Abstract

Background:

Tertiary lymphoid structure, an ectopic lymphoid tissue induced under chronic inflammation, develops in various kidney diseases and is associated with poor prognosis. The immune system requires metabolic resources to support immune function and lymphocyte proliferation. Hence, dramatic metabolic alterations presumably occur during the formation of tertiary lymphoid structure. However, it remains unclear whether metabolic remodeling occurs during this formation and its underlying mechanism.

Methods:

In a murine model of renal tertiary lymphoid structures, we used imaging mass spectrometry and metabolome analysis to investigate the metabolic pathway that characterizes tertiary lymphoid structures. We also performed in situ hybridization with immunofluorescence and pharmacological inhibition to explore the expression and function of the key molecules governing the pivotal metabolic pathway. We analyzed urine samples from mice and humans to explore the metabolites estimating the presence of renal tertiary lymphoid structures.

Results:

Significant glutathione accumulation and depletion of cysteine, which is essential for glutathione synthesis, was observed specifically within tertiary lymphoid structures. The kidneys with tertiary lymphoid structures exhibited higher glutathione concentrations than healthy kidneys. Tertiary lymphoid structures also showed significant accumulation of 4-HNE and 8-OHdG, markers of oxidative stress. Dendritic cells and fibroblasts within tertiary lymphoid structures expressed the cystine/glutamate transporter, that regulates glutathione synthesis, and supplied synthesized glutathione to lymphocytes, which lacked its expression. Pharmacological inhibition of the cystine/glutamate transporter prevented tertiary lymphoid structure formation in the kidney. Furthermore, enhanced glutathione synthesis within tertiary lymphoid structures was reflected in elevated urinary glutathione concentrations both in mice and humans, which effectively detected the presence of tertiary lymphoid structures in the kidney in IgA nephropathy patients.

Conclusions:

Glutathione significantly accumulated within tertiary lymphoid structures in the kidney. Inhibition of the cystine/glutamate transporter prevented the formation of tertiary lymphoid structures. Urinary glutathione served as a biomarker to detect tertiary lymphoid structures in the kidney.

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