Restored Collagen VI Microfilaments Network in the Extracellular Matrix of CRISPR-Edited Ullrich Congenital Muscular Dystrophy Fibroblasts

被引:0
作者
Benati, Daniela [1 ]
Cattin, Eleonora [1 ]
Corradi, Federico [1 ]
Ferrari, Tommaso [1 ]
Pedrazzoli, Eleonora [1 ]
Patrizi, Clarissa [1 ]
Marchionni, Matteo [1 ]
Bertorelli, Roberto [2 ]
De Sanctis, Veronica [2 ]
Merlini, Luciano [3 ]
Ferlini, Alessandra [4 ,5 ]
Sabatelli, Patrizia [6 ,7 ]
Gualandi, Francesca [5 ]
Recchia, Alessandra [1 ]
机构
[1] Univ Modena & Reggio Emilia, Dept Life Sci, I-41125 Modena, Italy
[2] Univ Trento, Next Generat Sequencing Core Facil Dept Cellular, Computat & Integrat Biomed CIBIO LaBSSAH, I-38122 Trento, Italy
[3] Univ Bologna, Dept Biomed & Neuromotor Sci, DIBINEM, I-40136 Bologna, Italy
[4] Univ Ferrara, Dept Med Sci, Sect Med Genet, I-44121 Ferrara, Italy
[5] Univ Hosp S Anna Ferrara, Dept Mother & Child, Unit Med Genet, I-44121 Ferrara, Italy
[6] CNR Inst Mol Genet, I-40136 Bologna, Italy
[7] IRCCS Ist Ortoped Rizzoli, I-40136 Bologna, Italy
关键词
CRISPR/Cas9; allele-specific gene editing; collagen VI; collagen VI-related disorders; patient-derived fibroblasts; MITOCHONDRIAL DYSFUNCTION; MUTATIONS; DOMINANT; PATHOGENESIS; PROTEIN; MUSCLE; ALLELE;
D O I
10.3390/biom14111412
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Collagen VI is an essential component of the extracellular matrix (ECM) composed by alpha 1, alpha 2 and alpha 3 chains and encoded by COL6A1, COL6A2 and COL6A3 genes. Dominant negative pathogenic variants in COL6A genes result in defects in collagen VI protein and are implicated in the pathogenesis of muscular diseases, including Ullrich congenital muscular dystrophy (UCMD). Here, we designed a CRISPR genome editing strategy to tackle a dominant heterozygous deletion c.824_838del in exon 9 of the COL6A1 gene, causing a lack of secreted collagen VI in a patient's dermal fibroblasts. The evaluation of efficiency and specificity of gene editing in treating patient's fibroblasts revealed the 32% efficiency of editing the mutated allele but negligible editing of the wild-type allele. CRISPR-treated UCMD skin fibroblasts rescued the secretion of collagen VI in the ECM, which restored the ultrastructure of the collagen VI microfibril network. By using normal melanocytes as surrogates of muscle cells, we found that collagen VI secreted by the corrected patient's skin fibroblasts recovered the anchorage to the cell surface, pointing to a functional improvement of the protein properties. These results support the application of the CRISPR editing approach to knock out COL6A1 mutated alleles and rescue the UCMD phenotype in patient-derived fibroblasts.
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页数:17
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