Division of Nephrology, Department of Medicine.
Department of Genetics and Genomic Science, and.
J Clin Invest. 2023 Nov 1;133(21):e170420. doi: 10.1172/JCI170420.
Donor-recipient (D-R) mismatches outside of human leukocyte antigens (HLAs) contribute to kidney allograft loss, but the mechanisms remain unclear, specifically for intronic mismatches. We quantified non-HLA mismatches at variant-, gene-, and genome-wide scales from single nucleotide polymorphism (SNP) data of D-Rs from 2 well-phenotyped transplant cohorts: Genomics of Chronic Allograft Rejection (GoCAR; n = 385) and Clinical Trials in Organ Transplantation-01/17 (CTOT-01/17; n = 146). Unbiased gene-level screening in GoCAR uncovered the LIMS1 locus as the top-ranked gene where D-R mismatches associated with death-censored graft loss (DCGL). A previously unreported, intronic, LIMS1 haplotype of 30 SNPs independently associated with DCGL in both cohorts. Haplotype mismatches showed a dosage effect, and minor-allele introduction to major-allele-carrying recipients showed greater hazard of DCGL. The LIMS1 haplotype and the previously reported LIMS1 SNP rs893403 are expression quantitative trait loci (eQTL) in immune cells for GCC2 (not LIMS1), which encodes a protein involved in mannose-6-phosphase receptor (M6PR) recycling. Peripheral blood and T cell transcriptome analyses associated the GCC2 gene and LIMS1 SNPs with the TGF-β1/SMAD pathway, suggesting a regulatory effect. In vitro GCC2 modulation impacted M6PR-dependent regulation of active TGF-β1 and downstream signaling in T cells. Together, our data link LIMS1 locus D-R mismatches to DCGL via GCC2 eQTLs that modulate TGF-β1-dependent effects on T cells.
供体-受者(D-R)在人类白细胞抗原(HLA)之外的不匹配导致肾移植失败,但具体机制尚不清楚,尤其是对于内含子不匹配。我们从两个经过良好表型鉴定的移植队列的供体-受者的单核苷酸多态性(SNP)数据中,从变体、基因和全基因组尺度量化了非 HLA 不匹配:慢性移植排斥反应的基因组学(GoCAR;n = 385)和器官移植临床试验-01/17(CTOT-01/17;n = 146)。GoCAR 中的无偏基因水平筛选发现,LIMS1 基因是 D-R 不匹配与死亡校正移植物丢失(DCGL)相关的排名最高的基因。一个以前未报道的、内含子的、包含 30 个 SNP 的 LIMS1 单倍型,在两个队列中均与 DCGL 独立相关。单倍型不匹配显示出剂量效应,并且将次要等位基因引入主要等位基因携带的受者中,会增加 DCGL 的风险。LIMS1 单倍型和之前报道的 LIMS1 SNP rs893403 是免疫细胞中 GCC2(非 LIMS1)的表达数量性状基因座(eQTL),其编码一种参与甘露糖-6-磷酸受体(M6PR)回收的蛋白质。外周血和 T 细胞转录组分析将 GCC2 基因和 LIMS1 SNP 与 TGF-β1/SMAD 途径相关联,表明存在调节作用。体外 GCC2 调节影响 M6PR 依赖性调节活性 TGF-β1 和 T 细胞中的下游信号。总之,我们的数据通过 GCC2 eQTL 将 LIMS1 基因座的 D-R 不匹配与 DCGL 联系起来,这些 eQTL 调节 TGF-β1 对 T 细胞的依赖作用。