The Human Infertility Single-cell Testis Atlas (HISTA): An interactive molecular scRNA-Seq reference of the human testis

Author:

Mahyari EisaORCID,Vigh-Conrad Katinka A.,Daube Clément,Lima Ana C.,Guo Jingtao,Carrell Douglas T.,Hotaling James M.,Aston Kenneth I.,Conrad Donald F.

Abstract

ABSTRACTBackgroundThe Human Infertility Single-cell Testis Atlas (HISTA) is an interactive web tool and a reference for navigating the transcriptome of the human testis. It was developed using joint analyses of scRNA-Seq datasets derived from a dozen donors, including healthy adult controls, juveniles, and several infertility cases. HISTA is very different than other websites of testis scRNA-seq data, providing visualization and hypothesis testing tools on a batch-removed and integrated dataset of 23429 genes measured across 26093 cells using.ObjectiveThe main goal of this manuscript is to describe HISTA in detail and highlight its unique and novel features.MethodsTherefore, we used HISTA as a guide for its application and demonstrated HISTA’s translational capacity to follow up on two observations of biological relevance.ResultsOur first analytical vignette identifies novel groupings of tightly regulated long non-coding RNA (lncRNA) molecules throughout spermatogenesis, suggesting specific functional genomics of these groupings. This analysis also found highly controlled expression of pairs of sense and antisense transcripts, suggesting conjoined regulatory mechanisms. In the next investigative vignette, we examined gene patterns in undifferentiated spermatogonia (USgs). We found the NANOS family of genes function as key drivers of transcriptomic signatures involved in human spermatogonial self-renewal programming; for the first time, demonstrating the relationship of NANOS1/2/3 transcripts in humans with scRNA-seq.Discussion and ConclusionsUsing HISTA, we found new observations that contribute to unraveling the mechanisms behind transcriptional regulation and maintenance germ cells across spermatogenesis. Furthermore, our findings provide guidance on future validation studies and experimental direction. Overall, HISTA continues to be utilized in testis-related research, and thus is updated regularly with new analytical methods, visualizations, and data. We aim to have it serve as a research environment for a broad range of investigators looking to explore the testis tissue and male infertility.Availability and ImplementationHISTA is available as an interactive web tool:https://conradlab.shinyapps.io/HISTASource code and documentation for HISTA are provided on GitHub:https://github.com/eisascience/HISTA

Publisher

Cold Spring Harbor Laboratory

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