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2.
Plast Aesthet Nurs (Phila) ; 44(3): 200-209, 2024.
Article in English | MEDLINE | ID: mdl-39028474

ABSTRACT

The purpose of this study was to identify the heterogeneity of atopic dermatitis and to identify key genetic factors. This can lead to new approaches and personalized treatment strategies. I conducted a literature review of three scientific publication platforms (i.e., PubMed, Cochrane Library, Scopus) for records published between July 2011 and July 2023 using key words related to the genetics of atopic dermatitis. The high heritability and genetic pleiotropia of atopic dermatitis emphasize the importance of its genetic predisposition and interaction with concomitant diseases. The study also shows the role of various genes associated with immunity and inflammatory reactions, as well as the high heritability of atopic dermatitis, particularly among twins. Genetic mutations, specifically polymorphisms of genes encoding immune factors and inflammatory responses, determine an individual's predisposition to atopic dermatitis. Research findings also point to genetic aspects associated with other skin conditions such as psoriasis and vitiligo, confirming the existence of common genetic mechanisms between these diseases. Specifically, polymorphisms of the filaggrin gene have been found to be key genetic determinants of atopic dermatitis. I analyzed the genetic basis of atopic dermatitis, emphasizing the importance of genetic determinants and their interaction with the immune system and extracellular matrix. This study contributes to the understanding of the mechanisms of atopic dermatitis and opens new perspectives for individualized treatments.


Subject(s)
Dermatitis, Atopic , Filaggrin Proteins , Genetic Predisposition to Disease , Mutation , Humans , Dermatitis, Atopic/genetics , Skin Diseases/genetics
3.
Article in English | MEDLINE | ID: mdl-38918943

ABSTRACT

INTRODUCTION: This study explores the immunogenetic associations of human leukocyte antigens (HLA) and the calcium release-activated calcium modulator 1 (ORAI1) and stromal interaction molecule 1 (STIM1) genes in HIV-1‒positive patients with HIV-related skin disorders. METHODS: This study assessed the distribution of variants of HLA class II alleles and expression levels of ORAI1 and STIM1 genes in the blood between HIV-1‒positive patients with HIV-related skin disorders and the control group with no HIV within the Latvian population. RESULTS: The research group comprised 115 HIV-1‒positive patients with HIV-related skin disorders, and the control group included 80 healthy individuals. Risk alleles (HLA- DQB1*02:01-0301 and HLA-DQA1*01:01-0501) and protective alleles (HLA-DRB1*07-13, DRB1*01-13, DRB1*04-11, and HLA-DQA1*05:01-0501) showed statistical significance in the groups. In 38 out of 115 patients, higher expression levels of ORAI1 and STIM1 genes were detected in the blood at the beginning of treatment. A significantly higher level of the microribonucleic acid (mRNA) ORAI1 gene was also found in the control group. CONCLUSIONS: The results demonstrate that HLA class II alleles are associated with a trend toward risk/protection concerning HIV-related skin disorders in HIV-1‒positive patients. It was also shown that a low level of ORAI1 mRNA and the risk allele HLA-DQB1*0201-0301 were simultaneously present in the research group.


Subject(s)
HIV Infections , ORAI1 Protein , Polymorphism, Genetic , Stromal Interaction Molecule 1 , Humans , ORAI1 Protein/genetics , Male , Latvia , Female , Stromal Interaction Molecule 1/genetics , Adult , HIV Infections/genetics , Middle Aged , Skin Diseases/genetics , Case-Control Studies , Neoplasm Proteins/genetics , Genetic Predisposition to Disease
4.
Int J Mol Sci ; 25(11)2024 May 29.
Article in English | MEDLINE | ID: mdl-38892115

ABSTRACT

Recently, the pathomechanisms of various skin diseases have been progressively elucidated [...].


Subject(s)
Skin Diseases , Humans , Skin Diseases/genetics , Skin Diseases/metabolism
5.
J Invest Dermatol ; 144(6): 1189-1199.e8, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38782533

ABSTRACT

Many human skin diseases result from the complex interplay of genetic and environmental mechanisms that are largely unknown. GWASs have yielded insight into the genetic aspect of complex disease by highlighting regions of the genome or specific genetic variants associated with disease. Leveraging this information to identify causal genes and cell types will provide insight into fundamental biology, inform diagnostics, and aid drug discovery. However, the etiological mechanisms from genetic variant to disease are still unestablished in most cases. There now exists an unprecedented wealth of data and computational methods for variant interpretation in a functional context. It can be challenging to decide where to start owing to a lack of consensus on the best way to identify causal genetic mechanisms. This article highlights 3 key aspects of genetic variant interpretation: prioritizing causal genes, cell types, and pathways. We provide a practical overview of the main methods and datasets, giving examples from recent atopic dermatitis studies to provide a blueprint for variant interpretation. A collection of resources, including brief description and links to the packages and web tools, is provided for researchers looking to start in silico follow-up genetic analysis of associated genetic variants.


Subject(s)
Genetic Predisposition to Disease , Genome-Wide Association Study , Skin Diseases , Humans , Dermatitis, Atopic/genetics , Genetic Variation , Skin Diseases/genetics
6.
Arch Dermatol Res ; 316(5): 195, 2024 May 22.
Article in English | MEDLINE | ID: mdl-38775978

ABSTRACT

Chronic arsenic exposure is a global health hazard significantly associated with the development of deleterious cutaneous changes and increased keratinocyte cancer risk. Although arsenic exposure is associated with broad-scale cellular and molecular changes, gaps exist in understanding how these changes impact the skin and facilitate malignant transformation. Recently developed epigenetic "clocks" can accurately predict chronological, biological and mitotic age, as well as telomere length, on the basis of tissue DNA methylation state. Deviations of predicted from expected age (epigenetic age dysregulation) have been associated with numerous complex diseases, increased all-cause mortality and higher cancer risk. We investigated the ability of these algorithms to detect molecular changes associated with chronic arsenic exposure in the context of associated skin lesions. To accomplish this, we utilized a multi-algorithmic approach incorporating seven "clocks" (Horvath, Skin&Blood, PhenoAge, PCPhenoAge, GrimAge, DNAmTL and epiTOC2) to analyze peripheral blood of pediatric and adult cohorts of arsenic-exposed (n = 84) and arsenic-naïve (n = 33) individuals, among whom n = 18 were affected by skin lesions. Arsenic-exposed adults with skin lesions exhibited accelerated epigenetic (Skin&Blood: + 7.0 years [95% CI 3.7; 10.2], q = 6.8 × 10-4), biological (PhenoAge: + 5.8 years [95% CI 0.7; 11.0], q = 7.4 × 10-2, p = 2.8 × 10-2) and mitotic age (epiTOC2: + 19.7 annual cell divisions [95% CI 1.8; 37.7], q = 7.4 × 10-2, p = 3.2 × 10-2) compared to healthy arsenic-naïve individuals; and accelerated epigenetic age (Skin&Blood: + 2.8 years [95% CI 0.2; 5.3], q = 2.4 × 10-1, p = 3.4 × 10-2) compared to lesion-free arsenic-exposed individuals. Moreover, lesion-free exposed adults exhibited accelerated Skin&Blood age (+ 4.2 [95% CI 1.3; 7.1], q = 3.8 × 10-2) compared to their arsenic-naïve counterparts. Compared to the pediatric group, arsenic-exposed adults exhibited accelerated epigenetic (+ 3.1 to 4.4 years (95% CI 1.2; 6.4], q = 2.4 × 10-4-3.1 × 10-3), biological (+ 7.4 to 7.8 years [95% CI 3.0; 12.1] q = 1.6 × 10-3-2.8 × 10-3) and mitotic age (+ 50.0 annual cell divisions [95% CI 15.6; 84.5], q = 7.8 × 10-3), as well as shortened telomere length (- 0.23 kilobases [95% CI - 0.13; - 0.33], q = 2.4 × 10-4), across all seven algorithms. We demonstrate that lifetime arsenic exposure and presence of arsenic-associated skin lesions are associated with accelerated epigenetic, biological and mitotic age, and shortened telomere length, reflecting altered immune signaling and genomic regulation. Our findings highlight the usefulness of DNA methylation-based algorithms in identifying deleterious molecular changes associated with chronic exposure to the heavy metal, serving as potential prognosticators of arsenic-induced cutaneous malignancy.


Subject(s)
Arsenic , DNA Methylation , Epigenesis, Genetic , Telomere Shortening , Humans , Adult , Arsenic/adverse effects , Arsenic/toxicity , Female , DNA Methylation/drug effects , Telomere Shortening/drug effects , Male , Child , Adolescent , Young Adult , Middle Aged , Mitosis/drug effects , Mitosis/genetics , Skin/pathology , Skin/drug effects , Skin Diseases/chemically induced , Skin Diseases/genetics , Skin Diseases/pathology , Skin Neoplasms/genetics , Skin Neoplasms/chemically induced , Skin Neoplasms/pathology
7.
Exp Dermatol ; 33(5): e15084, 2024 May.
Article in English | MEDLINE | ID: mdl-38711223

ABSTRACT

The transmembrane protein claudin-1 is critical for formation of the epidermal barrier structure called tight junctions (TJ) and has been shown to be important in multiple disease states. These include neonatal ichthyosis and sclerosing cholangitis syndrome, atopic dermatitis and various viral infections. To develop a model to investigate the role of claudin-1 in different disease settings, we used CRISPR/Cas9 to generate human immortalized keratinocyte (KC) lines lacking claudin-1 (CLDN1 KO). We then determined whether loss of claudin-1 expression affects epidermal barrier formation/function and KC differentiation/stratification. The absence of claudin-1 resulted in significantly reduced barrier function in both monolayer and organotypic cultures. CLDN1 KO cells demonstrated decreases in gene transcripts encoding the barrier protein filaggrin and the differentiation marker cytokeratin-10. Marked morphological differences were also observed in CLDN1 KO organotypic cultures including diminished stratification and reduced formation of the stratum granulosum. We also detected increased proliferative KC in the basale layer of CLDN1 KO organotypic cultures. These results further support the role of claudin-1 in epidermal barrier and suggest an additional role of this protein in appropriate stratification of the epidermis.


Subject(s)
Cell Differentiation , Claudin-1 , Epidermis , Filaggrin Proteins , Keratinocytes , Keratinocytes/metabolism , Claudin-1/metabolism , Claudin-1/genetics , Humans , Filaggrin Proteins/metabolism , Epidermis/metabolism , Epidermis/pathology , Skin Diseases/genetics , Skin Diseases/metabolism , Tight Junctions/metabolism , Keratin-10/metabolism , Keratin-10/genetics , Gene Knockout Techniques , Cell Proliferation , CRISPR-Cas Systems
8.
Curr Med Res Opin ; 40(5): 905-909, 2024 05.
Article in English | MEDLINE | ID: mdl-38557333

ABSTRACT

OBJECTIVES: This study focused on the link between skin disorders and Methylenetetrahydrofolate reductase (MTHFR) polymorphisms. METHODS: Study cases were taken from a pre-conceptional care program where patients with poor obstetric history were evaluated in terms of systemic disorders including skin diseases. This retrospective cohort (n = 472) consisted of 110 (23.3%) and 362 (76.7%) women with or without skin disorders, respectively. For ease of analysis, the history of skin diseases was classified into seven categories: (1) acne/rosacea/other acneiform disorders; (2) fungal disease; (3) pruritis/xerosis; (4) psoriasis vulgaris; (5) acrochordons and other benign skin growths; (6) urticaria/dermatitis; and (7) viral diseases. RESULTS: In this retrospective cohort of 472 women, we explored the impact of MTHFR A1298C and C677T polymorphisms on skin disorders. Despite similar allelic frequencies, our findings revealed a statistically significant association between the presence of MTHFR polymorphisms and skin disorders (p = .027). Subgroup analysis indicated significantly higher rates of MTHFR polymorphisms in patients with psoriasis vulgaris (p = .033) and acrochordons (p = .030), highlighting their potential relevance in specific skin disorder subtypes. CONCLUSIONS: The increased prevalence of psoriasis and acrochordons among women with MTHFR deficiency underscores the complex relationship between genetic factors and dermatological health. Our findings emphasized the critical role of MTHFR polymorphisms not only in poor obstetric history but also as significant contributors to skin disorders. This dual association highlights the importance of comprehensive preconception counseling, especially customized for women affected by skin disorders.


Subject(s)
Methylenetetrahydrofolate Reductase (NADPH2) , Skin Diseases , Humans , Female , Methylenetetrahydrofolate Reductase (NADPH2)/genetics , Adult , Skin Diseases/genetics , Skin Diseases/epidemiology , Pregnancy , Retrospective Studies , Preconception Care , Polymorphism, Single Nucleotide , Young Adult , Polymorphism, Genetic , Counseling
9.
Gastroenterology ; 167(2): 315-332, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38490347

ABSTRACT

BACKGROUND & AIMS: Patients with inflammatory bowel disease (IBD) frequently develop extraintestinal manifestations (EIMs) that contribute substantially to morbidity. We assembled the largest multicohort data set to date to investigate the clinical, serologic, and genetic factors associated with EIM complications in IBD. METHODS: Data were available in 12,083 unrelated European ancestry IBD cases with presence or absence of EIMs (eg, ankylosing spondylitis [ankylosing spondylitis and sacroiliitis], primary sclerosing cholangitis [PSC], peripheral arthritis, and skin and ocular manifestations) across 4 cohorts (Cedars-Sinai Medical Center, National Institute for Diabetes and Digestive and Kidney Diseases IBD Genetics Consortium, Sinai Helmsley Alliance for Research Excellence Consortium, and Risk Stratification and Identification of Immunogenetic and Microbial Markers of Rapid Disease Progression in Children with Crohn's Disease cohort). Clinical and serologic parameters were analyzed by means of univariable and multivariable regression analyses using a mixed-effects model. Within-case logistic regression was performed to assess genetic associations. RESULTS: Most EIMs occurred more commonly in female subjects (overall EIM: P = 9.0E-05, odds ratio [OR], 1.2; 95% CI, 1.1-1.4), with CD (especially colonic disease location; P = 9.8E-09, OR, 1.7; 95% CI, 1.4-2.0), and in subjects who required surgery (both CD and UC; P = 3.6E-19, OR, 1.7; 95% CI, 1.5-1.9). Smoking increased risk of EIMs except for PSC, where there was a "protective" effect. Multiple serologic associations were observed, including with PSC (anti-nuclear cytoplasmic antibody; IgG and IgA, anti-Saccharomyces cerevisiae antibodies; and anti-flagellin) and any EIM (anti-nuclear cytoplasmic antibody; IgG and IgA, anti-Saccharomyces cerevisiae antibodies; and anti-Pseudomonas fluorescens-associated sequence). We identified genome-wide significant associations within major histocompatibility complex (ankylosing spondylitis and sacroiliitis, P = 1.4E-15; OR, 2.5; 95% CI, 2.0-3.1; PSC, P = 2.7E-10; OR, 2.8; 95% CI, 2.0-3.8; ocular, P = 2E-08, OR, 3.6; 95% CI, 2.3-5.6; and overall EIM, P = 8.4E-09; OR, 2.2; 95% CI, 1.7-2.9) and CPEB4 (skin, P = 2.7E-08; OR, 1.5; 95% CI, 1.3-1.8). Genetic associations implicated tumor necrosis factor, JAK-STAT, and IL6 as potential targets for EIMs. Contrary to previous reports, only 2% of our subjects had multiple EIMs and most co-occurrences were negatively correlated. CONCLUSIONS: We have identified demographic, clinical, and genetic associations with EIMs that revealed underlying mechanisms and implicated novel and existing drug targets-important steps toward a more personalized approach to IBD management.


Subject(s)
Cholangitis, Sclerosing , Colitis, Ulcerative , Crohn Disease , Humans , Female , Male , Adult , Cholangitis, Sclerosing/immunology , Cholangitis, Sclerosing/genetics , Cholangitis, Sclerosing/diagnosis , Cholangitis, Sclerosing/complications , Middle Aged , Colitis, Ulcerative/immunology , Colitis, Ulcerative/genetics , Colitis, Ulcerative/diagnosis , Crohn Disease/immunology , Crohn Disease/genetics , Crohn Disease/diagnosis , Adolescent , Risk Factors , Child , Spondylitis, Ankylosing/genetics , Spondylitis, Ankylosing/immunology , Spondylitis, Ankylosing/diagnosis , Spondylitis, Ankylosing/complications , Genetic Predisposition to Disease , Young Adult , Sex Factors , Skin Diseases/etiology , Skin Diseases/immunology , Skin Diseases/genetics , Eye Diseases/etiology , Eye Diseases/immunology , Eye Diseases/diagnosis , Eye Diseases/genetics , Eye Diseases/epidemiology , Phenotype , Inflammatory Bowel Diseases/genetics , Inflammatory Bowel Diseases/immunology , Inflammatory Bowel Diseases/diagnosis , Logistic Models , Aged
10.
Adv Drug Deliv Rev ; 208: 115294, 2024 05.
Article in English | MEDLINE | ID: mdl-38527624

ABSTRACT

Genodermatoses represent a large group of inherited skin disorders encompassing clinically-heterogeneous conditions that manifest in the skin and other organs. Depending on disease variant, associated clinical manifestations and secondary complications can severely impact patients' quality of life and currently available treatments are transient and not curative. Multiple emerging approaches using CRISPR-based technologies offer promising prospects for therapy. Here, we explore current advances and challenges related to gene editing in rare skin diseases, including different strategies tailored to mutation type and structural organization of the affected gene, considerations for in vivo and ex vivo applications, the critical issue of delivery into the skin, and immune aspects of therapy. Against the backdrop of a landmark FDA approval for the first re-dosable gene replacement therapy for a rare genetic skin disorder, gene editing approaches are inching closer to the clinics and the possibility of a local permanent cure for patients affected by these disorders.


Subject(s)
Gene Editing , Skin Diseases , Humans , CRISPR-Cas Systems/genetics , Quality of Life , Skin , Skin Diseases/genetics , Skin Diseases/therapy
11.
Ecotoxicol Environ Saf ; 274: 116174, 2024 Apr 01.
Article in English | MEDLINE | ID: mdl-38471344

ABSTRACT

Trichloroethylene (TCE)-induced hypersensitivity syndrome (THS) has been a concern for many researchers in the field of environmental and occupational health. Currently, there is no specific treatment for THS, leaving patients to contend with severe infections arising from extensive skin lesions, consequently leading to serious adverse effects. However, the pathogenesis of severe skin damage in THS remains unclear. This study aims to investigate the specific danger signals and mechanisms underlying skin damage in THS through in vivo and in vitro experiments. We identified that cell supernatant containing 15 kDa granulysin (GNLY), released from activated CD3-CD56+NK cells or CD3+CD56+NKT cells in PBMC induced by TCE or its metabolite, promoted apoptosis in HaCaT cells. The apoptosis level decreased upon neutralization of GNLY in the supernatant by a GNLY-neutralizing antibody in HaCaT cells. Subcutaneous injection of recombinant 15 kDa GNLY exacerbated skin damage in the THS mouse model and better mimicked patients' disease states. Recombinant 15 kDa GNLY could directly induce cellular communication disorders, inflammation, and apoptosis in HaCaT cells. In addition to its cytotoxic effects, GNLY released from TCE-activated NK cells and NKT cells or synthesized GNLY alone could induce aberrant expression of the E3 ubiquitin ligase PDZRN3, causing dysregulation of the ubiquitination of the cell itself. Consequently, this resulted in the persistent opening of gap junctions composed of connexin43, thereby intensifying cellular inflammation and apoptosis through the "bystander effect". This study provides experimental evidence elucidating the mechanisms of THS skin damage and offers a novel theoretical foundation for the development of effective therapies targeting severe dermatitis induced by chemicals or drugs.


Subject(s)
Trichloroethylene , Ubiquitin-Protein Ligases , Animals , Mice , Connexin 43/metabolism , Hypersensitivity/genetics , Hypersensitivity/metabolism , Inflammation/pathology , Killer Cells, Natural , Leukocytes, Mononuclear , Skin Diseases/chemically induced , Skin Diseases/genetics , Trichloroethylene/toxicity , Ubiquitin-Protein Ligases/metabolism , Humans
12.
PLoS One ; 19(3): e0298443, 2024.
Article in English | MEDLINE | ID: mdl-38512926

ABSTRACT

BACKGROUND: Increasing evidence suggests that alterations in gut microbiota are associated with a variety of skin diseases. However, whether this association reflects a causal relationship remains unknown. We aimed to reveal the causal relationship between gut microbiota and skin diseases, including psoriasis, atopic dermatitis, acne, and lichen planus. METHODS: We obtained full genetic association summary data for gut microbiota, psoriasis, atopic dermatitis, acne, and lichen planus from public databases and used three methods, mainly inverse variance weighting, to analyze the causal relationships between gut microbiota and these skin diseases using bidirectional Mendelian randomization, as well as sensitivity and stability analysis of the results using multiple methods. RESULTS: The results showed that there were five associated genera in the psoriasis group, seven associated genera were obtained in the atopic dermatitis group, a total of ten associated genera in the acne group, and four associated genera in the lichen planus group. The results corrected for false discovery rate showed that Eubacteriumfissicatenagroup (P = 2.20E-04, OR = 1.24, 95%CI:1.11-1.40) and psoriasis still showed a causal relationship. In contrast, in the reverse Mendelian randomization results, there was no evidence of an association between these skin diseases and gut microbiota. CONCLUSION: We demonstrated a causal relationship between gut microbiota and immune skin diseases and provide a new therapeutic perspective for the study of immune diseases: targeted modulation of dysregulation of specific bacterial taxa to prevent and treat psoriasis, atopic dermatitis, acne, and lichen planus.


Subject(s)
Acne Vulgaris , Dermatitis, Atopic , Gastrointestinal Microbiome , Lichen Planus , Psoriasis , Skin Diseases , Humans , Dermatitis, Atopic/genetics , Gastrointestinal Microbiome/genetics , Mendelian Randomization Analysis , Skin Diseases/genetics , Psoriasis/genetics , Genome-Wide Association Study
13.
Ital J Dermatol Venerol ; 159(3): 318-328, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38502535

ABSTRACT

Telomeres, the safeguarding caps at the tips of chromosomes, are pivotal in the aging process of cells and have been linked to skin ailments and inflammatory conditions. Telomeres undergo a gradual reduction in length and factors such as oxidative stress hasten this diminishing process. Skin diseases including inflammatory conditions can be correlated with the shortening of telomeres and the persistent activation of DNA damage response in skin tissues. Telomere dysfunction could disrupt the balance of the skin, impairs wound healing, and may contribute to abnormal cytokine production. Skin aging and processes related to telomeres may function as one of the triggers for skin diseases. The presence of proinflammatory cytokines and dysfunctional telomeres in conditions such as Dyskeratosis Congenita implies a possible connection between the shortening of telomeres and the onset of chronic inflammatory skin disorders. In autoinflammatory skin diseases, chronic inflammation hinders wound healing thus aggravating the progression of the disease. The NF-ĸB pathway might contribute to the initiation or progression of chronic disorders by influencing mechanisms associated with telomere biology. The intricate connections between telomeres, telomerase, telomere-associated proteins, and skin diseases are still a complex puzzle to be solved. Here, we provide an overview of the impact of telomeres on both health and disease with a specific emphasis on their role in skin, inflammation and autoinflammatory skin disorders.


Subject(s)
Telomere , Humans , Skin Diseases/genetics , Inflammation/genetics , Telomere Shortening/physiology , Telomerase/metabolism , Telomerase/genetics , Dyskeratosis Congenita/genetics , Skin Aging/genetics , Skin Aging/physiology
14.
Ital J Dermatol Venerol ; 159(3): 285-293, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38376504

ABSTRACT

Melanocortin-1 receptor (MC1R) and its variants have a pivotal role in melanin synthesis. However, MC1R has been associated to non-pigmentary pathways related to DNA-repair activities and inflammation. The aim of this review is to provide an up-to-date overview about the role of MC1R in the skin. Specifically, after summarizing the current knowledge about MC1R structure and polymorphisms, we report data concerning the correlation between MC1R, phenotypic traits, skin aging, other diseases and skin cancers and their risk assessment through genetic testing.


Subject(s)
Receptor, Melanocortin, Type 1 , Skin Neoplasms , Receptor, Melanocortin, Type 1/genetics , Humans , Skin Neoplasms/genetics , Polymorphism, Genetic , Skin Aging/physiology , Skin Aging/genetics , Phenotype , Skin Diseases/genetics
16.
J Invest Dermatol ; 144(2): 307-315.e1, 2024 Feb.
Article in English | MEDLINE | ID: mdl-37716649

ABSTRACT

Opportunities to improve the clinical management of skin disease are being created by advances in genomic medicine. Large-scale sequencing increasingly challenges notions about single-gene disorders. It is now apparent that monogenic etiologies make appreciable contributions to the population burden of disease and that they are underrecognized in clinical practice. A genetic diagnosis informs on molecular pathology and may direct targeted treatments and tailored prevention strategies for patients and family members. It also generates knowledge about disease pathogenesis and management that is relevant to patients without rare pathogenic variants. Inborn errors of immunity are a large class of monogenic etiologies that have been well-studied and contribute to the population burden of inflammatory diseases. To further delineate the contributions of inborn errors of immunity to the pathogenesis of skin disease, we performed a set of analyses that identified 316 inborn errors of immunity associated with skin pathologies, including common skin diseases. These data suggest that clinical sequencing is underutilized in dermatology. We next use these data to derive a network that illuminates the molecular relationships of these disorders and suggests an underlying etiological organization to immune-mediated skin disease. Our results motivate the further development of a molecularly derived and data-driven reorganization of clinical diagnoses of skin disease.


Subject(s)
Dermatology , Skin Diseases , Humans , Skin Diseases/genetics , Skin Diseases/therapy , Skin , Pathology, Molecular
18.
JCI Insight ; 8(24)2023 Dec 22.
Article in English | MEDLINE | ID: mdl-38131377

ABSTRACT

Long noncoding RNAs (lncRNAs) regulate the expression of protein-coding genes and have been shown to play important roles in inflammatory skin diseases. However, we still have limited understanding of the functional impact of lncRNAs in skin, partly due to their tissue specificity and lower expression levels compared with protein-coding genes. We compiled a comprehensive list of 18,517 lncRNAs from different sources and studied their expression profiles in 834 RNA-Seq samples from multiple inflammatory skin conditions and cytokine-stimulated keratinocytes. Applying a balanced random forest to predict involvement in biological functions, we achieved a median AUROC of 0.79 in 10-fold cross-validation, identifying significant DNA binding domains (DBDs) for 39 lncRNAs. G18244, a skin-expressing lncRNA predicted for IL-4/IL-13 signaling in keratinocytes, was highly correlated in expression with F13A1, a protein-coding gene involved in macrophage regulation, and we further identified a significant DBD in F13A1 for G18244. Reflecting clinical implications, AC090198.1 (predicted for IL-17 pathway) and AC005332.6 (predicted for IFN-γ pathway) had significant negative correlation with the SCORAD metric for atopic dermatitis. We also utilized single-cell RNA and spatial sequencing data to validate cell type specificity. Our research demonstrates lncRNAs have important immunological roles and can help prioritize their impact on inflammatory skin diseases.


Subject(s)
RNA, Long Noncoding , Skin Diseases , Humans , RNA, Long Noncoding/genetics , RNA, Long Noncoding/metabolism , Skin/metabolism , Skin Diseases/genetics
19.
Exp Dermatol ; 32(12): 2094-2101, 2023 12.
Article in English | MEDLINE | ID: mdl-37822129

ABSTRACT

Basal cell carcinoma (BCC) is the most common malignant tumour arising from the basal cells of the epidermis or follicular structures. The aetiology of BCC is a multifactorial combination of genotype, phenotype and environmental factors. The pathogenesis of BCC remains unclear, with diverse and complex signalling pathways involved. ARHGAP40 is a Rho GTPase-activating protein (RhoGAP). Rho GTPases play a crucial role in the formation and progression of numerous cancers. The expression levels and roles of ARHGAP40 in BCC have not been explored. Here, ARHGAP40 expression was detected in a set of formalin-fixed, paraffin-embedded (FFPE) samples of basal cell carcinoma, paracancerous normal skin and benign skin lesions. The epigenetic mechanism that downregulates ARHGAP40 in basal cell carcinoma was investigated. We found that ARHGAP40 is expressed in normal basal cells and most benign skin lesions but lost in most basal cell carcinomas. We detected CpG island hypermethylation at the promoter-associated region of ARHGAP40. Our data suggest that ARHGAP40 is downregulated in BCC due to hypermethylation. ARHGAP40 protein is a potential novel biomarker for distinguishing trichoblastoma from BCC. This report is preliminary, and extensive research into the role of ARHGAP40 in BCC carcinogenesis and its potential as a treatment target is required in the future.


Subject(s)
Carcinoma, Basal Cell , GTPase-Activating Proteins , Skin Neoplasms , Humans , Carcinoma, Basal Cell/pathology , CpG Islands , Epidermis/metabolism , GTPase-Activating Proteins/genetics , Skin Diseases/genetics , Skin Neoplasms/pathology , DNA Methylation
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