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1.
Int J Mol Sci ; 23(14)2022 Jul 07.
Article in English | MEDLINE | ID: mdl-35886882

ABSTRACT

Sleeping Beauty (SB) is the first DNA transposon employed for efficient transposition in vertebrate cells, opening new applications for genetic engineering and gene therapies. A transposon-based gene delivery system holds the favourable features of non-viral vectors and an attractive safety profile. Here, we employed SB to engineer HEK293 cells for optimizing the production of a chimpanzee Adenovector (chAd) belonging to the Human Mastadenovirus C species. To date, chAd vectors are employed in several clinical settings for infectious diseases, last but not least COVID-19. A robust, efficient and quick viral vector production could advance the clinical application of chAd vectors. To this aim, we firstly swapped the hAd5 E1 with chAd-C E1 gene by using the CRISPR/Cas9 system. We demonstrated that in the absence of human Ad5 E1, chimp Ad-C E1 gene did not support HEK293 survival. To improve chAd-C vector production, we engineered HEK293 cells to stably express the chAd-C precursor terminal protein (ch.pTP), which plays a crucial role in chimpanzee Adenoviral DNA replication. The results indicate that exogenous ch.pTP expression significantly ameliorate the packaging and amplification of recombinant chAd-C vectors thus, the engineered HEK293ch.pTP cells could represent a superior packaging cell line for the production of these vectors.


Subject(s)
COVID-19 , Pan troglodytes , Adenoviridae/genetics , Animals , DNA Transposable Elements/genetics , Gene Transfer Techniques , Genetic Vectors/genetics , HEK293 Cells , Humans , Pan troglodytes/genetics
2.
Am J Hum Genet ; 108(2): 295-308, 2021 02 04.
Article in English | MEDLINE | ID: mdl-33508235

ABSTRACT

Retinitis pigmentosa (RP) is a group of progressive retinal degenerations of mostly monogenic inheritance, which cause blindness in about 1:3,500 individuals worldwide. Heterozygous variants in the rhodopsin (RHO) gene are the most common cause of autosomal dominant RP (adRP). Among these, missense variants at C-terminal proline 347, such as p.Pro347Ser, cause severe adRP recurrently in European affected individuals. Here, for the first time, we use CRISPR/Cas9 to selectively target the p.Pro347Ser variant while preserving the wild-type RHO allele in vitro and in a mouse model of adRP. Detailed in vitro, genomic, and biochemical characterization of the rhodopsin C-terminal editing demonstrates a safe downregulation of p.Pro347Ser expression leading to partial recovery of photoreceptor function in a transgenic mouse model treated with adeno-associated viral vectors. This study supports the safety and efficacy of CRISPR/Cas9-mediated allele-specific editing and paves the way for a permanent and precise correction of heterozygous variants in dominantly inherited retinal diseases.


Subject(s)
Gene Editing , Retinitis Pigmentosa/genetics , Retinitis Pigmentosa/therapy , Rhodopsin/genetics , Alleles , Animals , CRISPR-Cas Systems , Cell Line , Dependovirus/genetics , Disease Models, Animal , Electroretinography , Genetic Therapy , Humans , INDEL Mutation , Mice , Mice, Transgenic , Mutation, Missense , Photoreceptor Cells, Vertebrate/metabolism , Retina/metabolism , Retina/physiopathology , Rhodopsin/metabolism
3.
J Med Genet ; 57(7): 437-444, 2020 07.
Article in English | MEDLINE | ID: mdl-31857428

ABSTRACT

Retinal diseases (RD) include inherited retinal dystrophy (IRD), for example, retinitis pigmentosa and Leber's congenital amaurosis, or multifactorial forms, for example, age-related macular degeneration (AMD). IRDs are clinically and genetically heterogeneous in nature. To date, more than 200 genes are known to cause IRDs, which perturb the development, function and survival of rod and cone photoreceptors or retinal pigment epithelial cells. Conversely, AMD, the most common cause of blindness in the developed world, is an acquired disease of the macula characterised by progressive visual impairment. To date, available therapeutic approaches for RD include nutritional supplements, neurotrophic factors, antiangiogenic drugs for wet AMD and gene augmentation/interference strategy for IRDs. However, these therapies do not aim at correcting the genetic defect and result in inefficient and expensive treatments. The genome editing technology based on clustered regularly interspaced short palindromic repeat (CRISPR)-associated protein (Cas) and an RNA that guides the Cas protein to a predetermined region of the genome, represents an attractive strategy to tackle IRDs without available cure. Indeed, CRISPR/Cas system can permanently and precisely replace or remove genetic mutations causative of a disease, representing a molecular tool to cure a genetic disorder. In this review, we will introduce the mechanism of CRISPR/Cas system, presenting an updated panel of Cas variants and delivery systems, then we will focus on applications of CRISPR/Cas genome editing in the retina, and, as emerging treatment options, in patient-derived induced pluripotent stem cells followed by transplantation of retinal progenitor cells into the eye.


Subject(s)
CRISPR-Cas Systems/genetics , Gene Transfer Techniques/trends , Macular Degeneration/therapy , Retinal Diseases/therapy , Gene Editing/methods , Humans , Induced Pluripotent Stem Cells/transplantation , Macular Degeneration/genetics , Optic Atrophy, Hereditary, Leber/genetics , Optic Atrophy, Hereditary, Leber/therapy , Retina/pathology , Retina/transplantation , Retinal Diseases/genetics , Retinitis Pigmentosa/genetics , Retinitis Pigmentosa/therapy
4.
Mol Ther ; 26(11): 2592-2603, 2018 11 07.
Article in English | MEDLINE | ID: mdl-30122422

ABSTRACT

Deficiency of basement membrane heterotrimeric laminin 332 component, coded by LAMA3, LAMB3, and LAMC2 genes, causes junctional epidermolysis bullosa (JEB), a severe skin adhesion defect. Herein, we report the first application of CRISPR/Cas9-mediated homology direct repair (HDR) to in situ restore LAMB3 expression in JEB keratinocytes in vitro and in immunodeficient mice transplanted with genetically corrected skin equivalents. We packaged an adenovector carrying Cas9/guide RNA (gRNA) tailored to the intron 2 of LAMB3 gene and an integration defective lentiviral vector bearing a promoterless quasi-complete LAMB3 cDNA downstream a splice acceptor site and flanked by homology arms. Upon genuine HDR, we exploited the in vitro adhesion advantage of laminin 332 production to positively select LAMB3-expressing keratinocytes. HDR and restored laminin 332 expression were evaluated at single-cell level. Notably, monoallelic-targeted integration of LAMB3 cDNA was sufficient to in vitro recapitulate the adhesive property, the colony formation typical of normal keratinocytes, as well as their cell growth. Grafting of genetically corrected skin equivalents onto immunodeficient mice showed a completely restored dermal-epidermal junction. This study provides evidence for efficient CRISPR/Cas9-mediated in situ restoration of LAMB3 expression, paving the way for ex vivo clinical application of this strategy to laminin 332 deficiency.


Subject(s)
CRISPR-Cas Systems/genetics , Cell Adhesion Molecules/genetics , Epidermolysis Bullosa, Junctional/therapy , Genetic Therapy , Animals , Basement Membrane/pathology , Cell Adhesion Molecules/antagonists & inhibitors , Cell Adhesion Molecules/deficiency , DNA Repair/genetics , DNA, Complementary/genetics , Epidermolysis Bullosa, Junctional/genetics , Epidermolysis Bullosa, Junctional/pathology , Gene Expression Regulation , Humans , Introns/genetics , Keratinocytes/metabolism , Keratinocytes/pathology , Laminin/genetics , Lentivirus/genetics , Mice , Mutation , RNA Editing/genetics , Kalinin
5.
Cell Death Dis ; 9(1): 4, 2018 01 05.
Article in English | MEDLINE | ID: mdl-29305580

ABSTRACT

Hepatocellular carcinoma (HCC) represents the second cause of cancer-related mortality worldwide and is associated with poor prognosis, especially in patients not amenable for curative treatments. The multi-kinase inhibitor sorafenib represents the first-line treatment option for advanced HCC; nevertheless, its effectiveness is limited due to tumor heterogeneity as well as innate or acquired drug resistance, raising the need for new therapeutic strategies. MicroRNAs (miRNAs) involvement in treatment response as well as their safety and efficacy in preclinical models and clinical trials have been widely documented in the oncologic field, including HCC. Here, we identified miR-494 upregulation in a subgroup of human and rat HCCs with stem cell-like characteristics, as well as multiple epigenetic mechanisms involved in its aberrant expression in HCC cell lines and patients. Moreover, we identified p27, puma and pten among miR-494 targets, contributing to speed up cell cycle progression, enhance survival potential in stressful conditions and increase invasive and clonogenic capabilities. MiR-494 overexpression increased sorafenib resistance via mTOR pathway activation in HCC cell lines and, in line, high miR-494 levels associated with decreased sorafenib response in two HCC animal models. A sorafenib-combined anti-miR-494-based strategy revealed an enhanced anti-tumor potential with respect to sorafenib-only treatment in our HCC rat model. In conclusion, our findings suggested miR-494 as a possible therapeutic target as well as a candidate biomarker for patient stratification in advanced HCC.


Subject(s)
Carcinoma, Hepatocellular/pathology , Drug Resistance, Neoplasm/genetics , Epigenesis, Genetic , Liver Neoplasms/pathology , MicroRNAs/metabolism , AC133 Antigen/genetics , AC133 Antigen/metabolism , Animals , Antineoplastic Agents/pharmacology , Antineoplastic Agents/therapeutic use , Carcinoma, Hepatocellular/drug therapy , Carcinoma, Hepatocellular/genetics , Cell Cycle Checkpoints/drug effects , Cell Line, Tumor , Cell Movement/drug effects , DNA (Cytosine-5-)-Methyltransferases/chemistry , DNA (Cytosine-5-)-Methyltransferases/genetics , DNA (Cytosine-5-)-Methyltransferases/metabolism , Disease Models, Animal , Humans , Liver Neoplasms/drug therapy , Liver Neoplasms/genetics , Mice , PTEN Phosphohydrolase/genetics , PTEN Phosphohydrolase/metabolism , Phenotype , Rats , Sorafenib/pharmacology , Sorafenib/therapeutic use , TOR Serine-Threonine Kinases/genetics , TOR Serine-Threonine Kinases/metabolism , DNA Methyltransferase 3B
6.
Clin Cancer Res ; 23(14): 3953-3965, 2017 Jul 15.
Article in English | MEDLINE | ID: mdl-28096271

ABSTRACT

Purpose: The aberrant expression of miR-221 is a hallmark of human cancers, including hepatocellular carcinoma (HCC), and its involvement in drug resistance, together with a proved in vivo efficacy of anti-miR-221 molecules, strengthen its role as an attractive target candidate in the oncologic field. The discovery of biomarkers predicting the response to treatments represents a clinical challenge in the personalized treatment era. This study aimed to investigate the possible role of miR-221 as a circulating biomarker in HCC patients undergoing sorafenib treatment as well as to evaluate its contribution to sorafenib resistance in advanced HCC.Experimental Design: A chemically induced HCC rat model and a xenograft mouse model, together with HCC-derived cell lines were employed to analyze miR-221 modulation by Sorafenib treatment. Data from the functional analysis were validated in tissue samples from surgically resected HCCs. The variation of circulating miR-221 levels in relation to Sorafenib treatment were assayed in the animal models and in two independent cohorts of patients with advanced HCC.Results: MiR-221 over-expression was associated with Sorafenib resistance in two HCC animal models and caspase-3 was identified as its target gene, driving miR-221 anti-apoptotic activity following Sorafenib administration. Lower pre-treatment miR-221 serum levels were found in patients subsequently experiencing response to Sorafenib and an increase of circulating miR-221 at the two months assessment was observed in responder patients.Conclusions: MiR-221 might represent a candidate biomarker of likelihood of response to Sorafenib in HCC patients to be tested in future studies. Caspase-3 modulation by miR-221 participates to Sorafenib resistance. Clin Cancer Res; 23(14); 3953-65. ©2017 AACR.


Subject(s)
Carcinoma, Hepatocellular/drug therapy , Caspase 3/genetics , Liver Neoplasms/drug therapy , MicroRNAs/genetics , Niacinamide/analogs & derivatives , Phenylurea Compounds/administration & dosage , Aged , Aged, 80 and over , Animals , Apoptosis/genetics , Biomarkers, Tumor/genetics , Carcinoma, Hepatocellular/genetics , Carcinoma, Hepatocellular/pathology , Cell Proliferation/drug effects , Drug Resistance, Neoplasm/genetics , Female , Gene Expression Regulation, Neoplastic/drug effects , Hep G2 Cells , Humans , Liver Neoplasms/genetics , Liver Neoplasms/pathology , Male , Mice , Middle Aged , Niacinamide/administration & dosage , Niacinamide/adverse effects , Phenylurea Compounds/adverse effects , Sorafenib , Xenograft Model Antitumor Assays
7.
PLoS One ; 10(10): e0141448, 2015.
Article in English | MEDLINE | ID: mdl-26509672

ABSTRACT

The performance of circulating biomarkers for the diagnosis of hepatocellular carcinoma (HCC) is sub-optimal. In this study we tested circulating microRNAs as biomarkers for HCC in cirrhotic patients by performing a two stage study: a discovery phase conducted by microarray and a validation phase performed by qRT-PCR in an independent series of 118 patients. Beside miRNAs emerged from the discovery phase, miR-21, miR-221, miR-519d were also tested in the validation setting on the basis of literary and tissue findings. Deregulated microRNAs were assayed in HCC-derived cells in the intracellular compartment, cell culture supernatant and exosomal fraction. Serum and tissue microRNA levels were compared in 14 patients surgically treated for HCC. From the discovery study, it emerged that seven circulating microRNAs were differentially expressed in cirrhotic patients with and without HCC. In the validation set, miR-939, miR-595 and miR-519d were shown to differentiate cirrhotic patients with and without HCC. MiR-939 and miR-595 are independent factors for HCC. ROC curves of miR-939, miR-595 and miR-519d displayed that AUC was higher than AFP. An exosomal secretion of miR-519d, miR-21, miR-221 and miR-1228 and a correlation between circulating and tissue levels of miR-519d, miR-494 and miR-21 were found in HCC patients. Therefore, we show that circulating microRNAs deserve attention as non-invasive biomarkers in the diagnostic setting of HCC and that exosomal secretion contributes to discharging a subset of microRNAs into the extracellular compartment.


Subject(s)
Carcinoma, Hepatocellular/etiology , Liver Cirrhosis/complications , Liver Cirrhosis/genetics , Liver Neoplasms/etiology , MicroRNAs/genetics , Aged , Aged, 80 and over , Biomarkers , Carcinoma, Hepatocellular/pathology , Cell Line, Tumor , Cluster Analysis , Exosomes , Female , Gene Expression Profiling , Humans , Liver Cirrhosis/blood , Liver Neoplasms/pathology , Male , MicroRNAs/blood , Middle Aged , Neoplasm Staging , ROC Curve , Reproducibility of Results
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