TY - JOUR
T1 - OGG1-driven pathogenesis in Kawasaki disease
T2 - Identification and pharmacological regulation of a molecular marker validated in transgenic mice and clinical models
AU - Yun, Xiaoyun
AU - Qu, Liqun
AU - Lo, Hanghong
AU - Wu, Jianhui
AU - Zeng, Wu
AU - U, Ka In
AU - Chen, Yan
AU - Pan, Baoquan
AU - Tang, Bin
AU - Zhang, Wei
AU - Wang, Yuping
AU - Xu, Xiongfei
AU - Zhou, Jie
AU - Hsiao, Wendy WL
AU - Wong, Vincent Kam Wai
AU - Lei, Cheng
AU - Law, Betty Yuen Kwan
N1 - Publisher Copyright:
© 2025 The Authors
PY - 2025/10
Y1 - 2025/10
N2 - Kawasaki disease (KD) is an acute systemic vasculitis affecting children and leads to severe coronary artery complications, such as aneurysms. The cause of KD remains elusive, with infections suspected as potential triggers. Diagnosis is largely dependent on clinical symptoms due to the lack of specific laboratory molecular markers. This study investigates the potential of Ogg1, a gene involved in DNA repair and inflammatory processes, as both a molecular marker and a pharmacological target for KD. Utilizing bioinformatics and molecular biology techniques, the study examined OGG1's role in KD. Clinical validation involved total RNA sequencing of blood samples from KD patients and healthy controls, with differential gene expression analyzed. Further validation included qPCR on samples from KD patients pre- and post-treatment. Molecular docking explored interactions and identified regulators of OGG1. The study highlighted that Kushenol C (KC), a prenylated flavonoid from Sophora flavescens, regulates OGG1. Biolayer interferometry (BLI) confirmed KC's interaction with OGG1. In an acute Lactobacillus casei cell wall extract (LCWE)-induced KD model, KC reduced inflammation and prevented coronary artery complications in wild-type mice. Combining KC with intravenous immunoglobulin (IVIG) enhanced anti-inflammatory in vivo effects. Moreover, KC's efficacy was reduced in Ogg1-knockout mice, highlighting OGG1's dual role as a molecular target and marker. These findings suggest that OGG1 could be a promising pharmacological target for KD. The identification of KC as an OGG1 regulator presents a novel therapeutic strategy that could potentially mitigate vascular complications associated with KD, opening avenues for further targeted KD therapy development.
AB - Kawasaki disease (KD) is an acute systemic vasculitis affecting children and leads to severe coronary artery complications, such as aneurysms. The cause of KD remains elusive, with infections suspected as potential triggers. Diagnosis is largely dependent on clinical symptoms due to the lack of specific laboratory molecular markers. This study investigates the potential of Ogg1, a gene involved in DNA repair and inflammatory processes, as both a molecular marker and a pharmacological target for KD. Utilizing bioinformatics and molecular biology techniques, the study examined OGG1's role in KD. Clinical validation involved total RNA sequencing of blood samples from KD patients and healthy controls, with differential gene expression analyzed. Further validation included qPCR on samples from KD patients pre- and post-treatment. Molecular docking explored interactions and identified regulators of OGG1. The study highlighted that Kushenol C (KC), a prenylated flavonoid from Sophora flavescens, regulates OGG1. Biolayer interferometry (BLI) confirmed KC's interaction with OGG1. In an acute Lactobacillus casei cell wall extract (LCWE)-induced KD model, KC reduced inflammation and prevented coronary artery complications in wild-type mice. Combining KC with intravenous immunoglobulin (IVIG) enhanced anti-inflammatory in vivo effects. Moreover, KC's efficacy was reduced in Ogg1-knockout mice, highlighting OGG1's dual role as a molecular target and marker. These findings suggest that OGG1 could be a promising pharmacological target for KD. The identification of KC as an OGG1 regulator presents a novel therapeutic strategy that could potentially mitigate vascular complications associated with KD, opening avenues for further targeted KD therapy development.
KW - 8-oxoguanine DNA glycosylase-1 (OGG1)
KW - Intravenous immunoglobulin (IVIG)
KW - Kawasaki disease (KD)
KW - Kushenol C (KC)
UR - https://www.scopus.com/pages/publications/105014992071
U2 - 10.1016/j.phrs.2025.107939
DO - 10.1016/j.phrs.2025.107939
M3 - Article
C2 - 40897291
AN - SCOPUS:105014992071
SN - 1043-6618
VL - 220
JO - Pharmacological Research
JF - Pharmacological Research
M1 - 107939
ER -