对患者 iPSCs 中的 C9orf72 重复扩增进行单分子测序。

IF 1 Q3 BIOLOGY
Yu-Chih Tsai, Katherine A Brown, Mylinh T Bernardi, John Harting, Claire D Clelland
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引用次数: 0

摘要

C9orf72 基因中的六核苷酸 GGGGCC 重复扩增是肌萎缩侧索硬化症(ALS)和额颞叶痴呆症(FTD)最常见的遗传病因。目前,临床和研究人员采用长程 PCR 或 Southern 印迹法鉴定 C9orf72 重复扩增,但这些方法缺乏准确性和灵敏度。PCR 无法扩增该区域富含的 GC 和重复内容,这导致传统的测序方法失败。我们转而采用 PacBio 单分子测序法,在不扩增的情况下检测 C9orf72 重复扩增并确定其大小。我们从不同重复长度的患者iPSCs中分离出高分子量基因组DNA,然后用CRISPR/Cas9系统从裸DNA中切除含有C9orf72重复扩增的区域。我们在切端添加适配器,捕获目标区域,在 PacBio 的 Sequel、Sequel II 或 Sequel IIe 上进行测序。这种方法无需扩增就能富集 C9orf72 重复区,即使重复数以千计,也能对重复扩增进行一致、准确的大小测定。主要特点 - 本方案改编自 PacBio 之前的 "利用 CRISPR-Cas9 系统的无扩增靶向测序"。- 专为确定源自患者的 iPSC 中 C9orf72 重复扩增的大小而优化,适用于来自任何细胞类型、血液或组织的 DNA。- 需要高分子量裸 DNA。- 与 Sequel I 和 II 兼容,但与 Revio 不兼容。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Single-Molecule Sequencing of the C9orf72 Repeat Expansion in Patient iPSCs.

A hexanucleotide GGGGCC repeat expansion in the C9orf72 gene is the most frequent genetic cause of amyotrophic lateral sclerosis (ALS) and frontal temporal dementia (FTD). C9orf72 repeat expansions are currently identified with long-range PCR or Southern blot for clinical and research purposes, but these methods lack accuracy and sensitivity. The GC-rich and repetitive content of the region cannot be amplified by PCR, which leads traditional sequencing approaches to fail. We turned instead to PacBio single-molecule sequencing to detect and size the C9orf72 repeat expansion without amplification. We isolated high molecular weight genomic DNA from patient-derived iPSCs of varying repeat lengths and then excised the region containing the C9orf72 repeat expansion from naked DNA with a CRISPR/Cas9 system. We added adapters to the cut ends, capturing the target region for sequencing on PacBio's Sequel, Sequel II, or Sequel IIe. This approach enriches the C9orf72 repeat region without amplification and allows the repeat expansion to be consistently and accurately sized, even for repeats in the thousands. Key features • This protocol is adapted from PacBio's previous "no-amp targeted sequencing utilizing the CRISPR-Cas9 system." • Optimized for sizing C9orf72 repeat expansions in patient-derived iPSCs and applicable to DNA from any cell type, blood, or tissue. • Requires high molecular weight naked DNA. • Compatible with Sequel I and II but not Revio.

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