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307 results

Full text 2026

Active zone plasticity couples sleep need to presynaptic hypophosphorylation

Piao C, Dutkiewicz EP, Kollipara L, et al.

Sleep need is associated with both circuit dynamics and widespread synaptic plasticity, yet the specific synaptic changes underlying sleep homeostasis remain incompletely understood. In <i>Drosophila</i>, sleep loss has been shown to trigger plasticity of the …

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Bioinformatics Structural Variants
Full text 2022

Long-Read Sequencing Identifies the First Retrotransposon Insertion and Resolves Structural Variants Causing Antithrombin Deficiency

de la Morena-Barrio B, Stephens J, de la Morena-Barrio ME, et al.

The identification of inherited antithrombin deficiency (ATD) is critical to prevent potentially life-threatening thrombotic events. Causal variants in <i>SERPINC1</i> are identified for up to 70% of cases, the majority being single-nucleotide variants and indels. The …

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Structural Variants
Full text 2023

Case report: A novel 10.8-kb deletion identified in the β-globin gene through the long-read sequencing technology in a Chinese family with abnormal hemoglobin testing results

Shao M, Wan Y, Cao W, et al.

<h4>Background</h4>Thalassemia is a common inherited hemoglobin disorder caused by a deficiency of one or more globin subunits. Substitution variants and deletions in the <i>HBB</i> gene are the major causes of β-thalassemia, of which large fragment …

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Nanopore Sequencing Structural Variants
Full text 2022

Construction of a trio-based structural variation panel utilizing activated T lymphocytes and long-read sequencing technology

Otsuki A, Okamura Y, Ishida N, et al.

Long-read sequencing technology enable better characterization of structural variants (SVs). To adapt the technology to population-scale analyses, one critical issue is to obtain sufficient amount of high-molecular-weight genomic DNA. Here, we propose utilizing activated T …

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Nanopore Sequencing Structural Variants
Full text 2023

Characterization of complex structural variation in the &lt;i&gt;CYP2D6-CYP2D7-CYP2D8&lt;/i&gt; gene loci using single-molecule long-read sequencing

Turner AJ, Derezinski AD, Gaedigk A, et al.

Complex regions in the human genome such as repeat motifs, pseudogenes and structural (SVs) and copy number variations (CNVs) present ongoing challenges to accurate genetic analysis, particularly for short-read Next-Generation-Sequencing (NGS) technologies. One such region …

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Structural Variants
Full text 2023

Reply: Correspondence on NanoVar's performance outlined by Jiang T. et al. in 'Long-read sequencing settings for efficient structural variation detection based on comprehensive evaluation'

Jiang T, Liu S, Guo H.

We published a paper in BMC Bioinformatics comprehensively evaluating the performance of structural variation (SV) calling with long-read SV detection methods based on simulated error-prone long-read data under various sequencing settings. Recently, C.Y.T. et al. …

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Structural Variants
Full text 2023

Revealing within-species diversity in uncultured human gut bacteria with single-cell long-read sequencing

Kogawa M, Nishikawa Y, Saeki T, et al.

Obtaining complete and accurate bacterial genomes is vital for studying the characteristics of uncultured bacteria. Single-cell genomics is a promising approach for the culture-independent recovery of bacterial genomes from individual cells. However, single-amplified genomes (SAGs) …

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Genome Assembly Metagenomics Nanopore Sequencing
Full text 2023

Correspondence on NanoVar's performance outlined by Jiang T. et al. in "Long-read sequencing settings for efficient structural variation detection based on comprehensive evaluation"

Tham CY, Benoukraf T.

A recent paper by Jiang et al. in BMC Bioinformatics presented guidelines on long-read sequencing settings for structural variation (SV) calling, and benchmarked the performance of various SV calling tools, including NanoVar. In their simulation-based …

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Bioinformatics Nanopore Sequencing Structural Variants