Hemminger Zachary, Sanchez-Tam Gabriela, Ocampo Haley De, Wang Aihui, Underwood Thomas, Xie Fangming, Zhao Qiuying, Song Dongyuan, Li Jingyi Jessica, Dong Hongwei, Wollman Roy
Biocartography Inc.
Department of Chemistry and Biochemistry, UCLA.
bioRxiv. 2024 Oct 9:2024.10.08.617260. doi: 10.1101/2024.10.08.617260.
Genetic variation can alter brain structure and, consequently, function. Comparative statistical analysis of mouse brains across genetic backgrounds requires spatial, single-cell, atlas-scale data, in replicates-a challenge for current technologies. We introduce tlas-scale ranscriptome ocalization using ggregate ignatures (ATLAS), a scalable tissue mapping method. ATLAS learns transcriptional signatures from scRNAseq data, encodes them with tens of thousands of oligonucleotide probes, and decodes them to infer cell types and imputed transcriptomes. We validated ATLAS by comparing its cell type inferences with direct MERFISH measurements of marker genes and quantitative comparisons to four other technologies. Using ATLAS, we mapped the central brains of five male and five female C57BL/6J (B6) mice and five male BTBR T+ tf/J (BTBR) mice, an idiopathic model of autism, collectively profiling over 40 million cells across over 400 coronal sections. Our analysis revealed over 40 significant differences in cell type distributions and identified 16 regional composition changes across male-female and B6-BTBR comparisons. ATLAS thus enables systematic comparative studies, facilitating organ-level structure-function analysis of disease models.
基因变异能够改变大脑结构,进而影响其功能。对不同遗传背景的小鼠大脑进行比较统计分析需要空间单细胞图谱规模的数据,并进行重复实验——这对当前技术来说是一项挑战。我们引入了基于聚合特征的图谱规模转录组定位技术(ATLAS),这是一种可扩展的组织图谱绘制方法。ATLAS从单细胞RNA测序(scRNAseq)数据中学习转录特征,用数以万计的寡核苷酸探针进行编码,并对其进行解码以推断细胞类型和估算转录组。我们通过将其细胞类型推断结果与标记基因的直接多重误差校正荧光原位杂交(MERFISH)测量结果进行比较,并与其他四种技术进行定量比较,对ATLAS进行了验证。使用ATLAS,我们绘制了五只雄性和五只雌性C57BL/6J(B6)小鼠以及五只雄性BTBR T+ tf/J(BTBR)小鼠(一种自闭症特发性模型)的中枢大脑图谱,在400多个冠状切片上对超过4000万个细胞进行了集体分析。我们的分析揭示了细胞类型分布上的40多个显著差异,并在雄性与雌性以及B6与BTBR的比较中确定了16个区域组成变化。因此,ATLAS能够进行系统的比较研究,促进对疾病模型的器官水平结构功能分析。