New techniques in molecular genetic diagnostics now allow for accurate diagnosis in a large proportion of patients with muscular diseases. Nevertheless, many patients remain unsolved, although the clinical history and/or the muscle biopsy give a clear indication of the involved genes. In many cases, there is a strong suspicion that the cause must lie in unexplored gene areas, such as deep-intronic or other non-coding regions. In order to find these changes, next-generation sequencing (NGS) methods are constantly evolving, making it possible to sequence entire genomes to reveal these previously uninvestigated regions. Here, we present a young woman who was strongly suspected of having a so far genetically unsolved sarcoglycanopathy based on her clinical history and muscle biopsy. Using short read whole genome sequencing (WGS), a homozygous inversion on chromosome 13 involving SGCG and LINC00621 was detected. The breakpoint in intron 2 of SGCG led to the absence of γ-sarcoglycan, resulting in the manifestation of autosomal recessive limb-girdle muscular dystrophy 5 (LGMDR5) in the young woman.
Homozygous Inversion on Chromosome 13 Involving SGCG Detected by Short Read Whole Genome Sequencing in a Patient Suffering from Limb-Girdle Muscular Dystrophy.
通过短读长全基因组测序在患有肢带型肌营养不良症的患者中检测到 13 号染色体上涉及 SGCG 的纯合倒位
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作者:Pluta Natalie, Hoffjan Sabine, Zimmer Frederic, Köhler Cornelia, Lücke Thomas, Mohr Jennifer, Vorgerd Matthias, Nguyen Hoa Huu Phuc, Atlan David, Wolf Beat, Zaum Ann-Kathrin, Rost Simone
| 期刊: | Genes | 影响因子: | 2.800 |
| 时间: | 2022 | 起止号: | 2022 Sep 28; 13(10):1752 |
| doi: | 10.3390/genes13101752 | 研究方向: | 其它 |
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