Department of Medicine, Indiana University School of Medicine, Indianapolis, IN 46202, USA.
Roudebush Veteran Affairs Medical Center, Indianapolis, IN 46202, USA.
Sci Adv. 2021 Feb 10;7(7). doi: 10.1126/sciadv.abd3359. Print 2021 Feb.
The gene expression signature of the human kidney interstitium is incompletely understood. The cortical interstitium (excluding tubules, glomeruli, and vessels) in reference nephrectomies ( = 9) and diabetic kidney biopsy specimens ( = 6) was laser microdissected (LMD) and sequenced. Samples underwent RNA sequencing. Gene signatures were deconvolved using single nuclear RNA sequencing (snRNAseq) data derived from overlapping specimens. Interstitial LMD transcriptomics uncovered previously unidentified markers including , validated with in situ hybridization. LMD transcriptomics and snRNAseq revealed strong correlation of gene expression within corresponding kidney regions. Relevant enriched interstitial pathways included G-protein coupled receptor. binding and collagen biosynthesis. The diabetic interstitium was enriched for extracellular matrix organization and small-molecule catabolism. Cell type markers with unchanged expression (, , and ) and those down-regulated in diabetic nephropathy (, , and ) were identified. LMD transcriptomics complements snRNAseq; together, they facilitate mapping of interstitial marker genes to aid interpretation of pathophysiology in precision medicine studies.
人类肾间质的基因表达特征尚不完全清楚。对参考肾切除术(=9)和糖尿病肾病活检标本(=6)的皮质间质(不包括小管、肾小球和血管)进行激光显微切割(LMD)和测序。样品进行了 RNA 测序。使用源自重叠标本的单核 RNA 测序(snRNAseq)数据对基因特征进行反卷积。间质 LMD 转录组学揭示了以前未识别的标记物,包括通过原位杂交验证的标记物。LMD 转录组学和 snRNAseq 揭示了相应肾脏区域内基因表达的强烈相关性。相关的丰富间质途径包括 G 蛋白偶联受体。结合和胶原生物合成。糖尿病性间质富含细胞外基质组织和小分子分解代谢。确定了表达不变的细胞类型标记物(、和)和在糖尿病肾病中下调的标记物(、和)。LMD 转录组学补充了 snRNAseq;它们共同促进了间质标记基因的映射,有助于解释精准医学研究中病理生理学的解释。