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Dive into the research topics where Philip Fleckman is active.

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Featured researches published by Philip Fleckman.


Nature Genetics | 2006

Common loss-of-function variants of the epidermal barrier protein filaggrin are a major predisposing factor for atopic dermatitis

Colin N. A. Palmer; Alan D. Irvine; Ana Terron-Kwiatkowski; Yiwei Zhao; Haihui Liao; Simon P. Lee; David Goudie; Aileen Sandilands; Linda E. Campbell; Frances J.D. Smith; Grainne M. O'Regan; Rosemarie Watson; Jo E Cecil; Sherri J. Bale; John Compton; John J. DiGiovanna; Philip Fleckman; Sue Lewis-Jones; Gehan Arseculeratne; Ann Sergeant; Colin S. Munro; Brahim El Houate; Ken McElreavey; Liselotte Brydensholt Halkjær; Hans Bisgaard; Somnath Mukhopadhyay; W.H. Irwin McLean

Atopic disease, including atopic dermatitis (eczema), allergy and asthma, has increased in frequency in recent decades and now affects ∼20% of the population in the developed world. Twin and family studies have shown that predisposition to atopic disease is highly heritable. Although most genetic studies have focused on immunological mechanisms, a primary epithelial barrier defect has been anticipated. Filaggrin is a key protein that facilitates terminal differentiation of the epidermis and formation of the skin barrier. Here we show that two independent loss-of-function genetic variants (R510X and 2282del4) in the gene encoding filaggrin (FLG) are very strong predisposing factors for atopic dermatitis. These variants are carried by ∼9% of people of European origin. These variants also show highly significant association with asthma occurring in the context of atopic dermatitis. This work establishes a key role for impaired skin barrier function in the development of atopic disease.


Nature Genetics | 2006

Loss-of-function mutations in the gene encoding filaggrin cause ichthyosis vulgaris.

Frances J.D. Smith; Alan D. Irvine; Ana Terron-Kwiatkowski; Aileen Sandilands; Linda E. Campbell; Yiwei Zhao; Haihui Liao; Alan Evans; David Goudie; Sue Lewis-Jones; Gehan Arseculeratne; Colin S. Munro; Ann Sergeant; Grainne M. O'Regan; Sherri J. Bale; John Compton; John J. DiGiovanna; Richard B. Presland; Philip Fleckman; W.H. Irwin McLean

Ichthyosis vulgaris (OMIM 146700) is the most common inherited disorder of keratinization and one of the most frequent single-gene disorders in humans. The most widely cited incidence figure is 1 in 250 based on a survey of 6,051 healthy English schoolchildren. We have identified homozygous or compound heterozygous mutations R501X and 2282del4 in the gene encoding filaggrin (FLG) as the cause of moderate or severe ichthyosis vulgaris in 15 kindreds. In addition, these mutations are semidominant; heterozygotes show a very mild phenotype with incomplete penetrance. The mutations show a combined allele frequency of ∼4% in populations of European ancestry, explaining the high incidence of ichthyosis vulgaris. Profilaggrin is the major protein of keratohyalin granules in the epidermis. During terminal differentiation, it is cleaved into multiple filaggrin peptides that aggregate keratin filaments. The resultant matrix is cross-linked to form a major component of the cornified cell envelope. We find that loss or reduction of this major structural protein leads to varying degrees of impaired keratinization.


Nature Genetics | 2009

A homozygous frameshift mutation in the mouse Flg gene facilitates enhanced percutaneous allergen priming

Padraic G. Fallon; Takashi Sasaki; Aileen Sandilands; Linda E. Campbell; Sean P. Saunders; Niamh E. Mangan; John J. Callanan; Hiroshi Kawasaki; Aiko Shiohama; Akiharu Kubo; John P. Sundberg; Richard B. Presland; Philip Fleckman; Nobuyoshi Shimizu; Jun Kudoh; Alan D. Irvine; Masayuki Amagai; W.H. Irwin McLean

Loss-of-function mutations in the FLG (filaggrin) gene cause the semidominant keratinizing disorder ichthyosis vulgaris and convey major genetic risk for atopic dermatitis (eczema), eczema-associated asthma and other allergic phenotypes. Several low-frequency FLG null alleles occur in Europeans and Asians, with a cumulative frequency of ∼9% in Europe. Here we report a 1-bp deletion mutation, 5303delA, analogous to common human FLG mutations, within the murine Flg gene in the spontaneous mouse mutant flaky tail (ft). We demonstrate that topical application of allergen to mice homozygous for this mutation results in cutaneous inflammatory infiltrates and enhanced cutaneous allergen priming with development of allergen-specific antibody responses. These data validate flaky tail as a useful model of filaggrin deficiency and provide experimental evidence for the hypothesis that antigen transfer through a defective epidermal barrier is a key mechanism underlying elevated IgE sensitization and initiation of cutaneous inflammation in humans with filaggrin-related atopic disease.


American Journal of Human Genetics | 2005

Mutations in ABCA12 underlie the severe congenital skin disease harlequin ichthyosis

P. David Kelsell; Elizabeth E. Norgett; Harriet Unsworth; Muy-Teck Teh; Thomas Cullup; Charles A. Mein; J. Patricia Dopping-Hepenstal; A. Beverly Dale; Gianluca Tadini; Philip Fleckman; G. Karen Stephens; P. Virginia Sybert; Susan B. Mallory; V. Bernard North; R. David Witt; Eli Sprecher; Aileen Taylor; Andrew Ilchyshyn; T. Cameron Kennedy; Helen Goodyear; Celia Moss; David Paige; I. John Harper; D. Bryan Young; M. Irene Leigh; A.J. Robin Eady; A. Edel O’Toole

Harlequin ichthyosis (HI) is the most severe and frequently lethal form of recessive congenital ichthyosis. Although defects in lipid transport, protein phosphatase activity, and differentiation have been described, the genetic basis underlying the clinical and cellular phenotypes of HI has yet to be determined. By use of single-nucleotide-polymorphism chip technology and homozygosity mapping, a common region of homozygosity was observed in five patients with HI in the chromosomal region 2q35. Sequencing of the ABCA12 gene, which maps within the minimal region defined by homozygosity mapping, revealed disease-associated mutations, including large intragenic deletions and frameshift deletions in 11 of the 12 screened individuals with HI. Since HI epidermis displays abnormal lamellar granule formation, ABCA12 may play a critical role in the formation of lamellar granules and the discharge of lipids into the intercellular spaces, which would explain the epidermal barrier defect seen in this disorder. This finding paves the way for early prenatal diagnosis. In addition, functional studies of ABCA12 will lead to a better understanding of epidermal differentiation and barrier formation.


American Journal of Pathology | 2011

Filaggrin Genotype in Ichthyosis Vulgaris Predicts Abnormalities in Epidermal Structure and Function

Robert Gruber; Peter M. Elias; Debra Crumrine; Tzu Kai Lin; Johanna M. Brandner; Jean Pierre Hachem; Richard B. Presland; Philip Fleckman; Andreas R. Janecke; Aileen Sandilands; W.H. Irwin McLean; P. Fritsch; Michael Mildner; Erwin Tschachler; Matthias Schmuth

Although it is widely accepted that filaggrin (FLG) deficiency contributes to an abnormal barrier function in ichthyosis vulgaris and atopic dermatitis, the pathomechanism of how FLG deficiency provokes a barrier abnormality in humans is unknown. We report here that the presence of FLG mutations in Caucasians predicts dose-dependent alterations in epidermal permeability barrier function. Although FLG is an intracellular protein, the barrier abnormality occurred solely via a paracellular route in affected stratum corneum. Abnormal barrier function correlated with alterations in keratin filament organization (perinuclear retraction), impaired loading of lamellar body contents, followed by nonuniform extracellular distribution of secreted organelle contents, and abnormalities in lamellar bilayer architecture. In addition, we observed reductions in corneodesmosome density and tight junction protein expression. Thus, FLG deficiency provokes alterations in keratinocyte architecture that influence epidermal functions localizing to the extracellular matrix. These results clarify how FLG mutations impair epidermal permeability barrier function.


Matrix Biology | 2009

Mice that lack matrix metalloproteinase-9 display delayed wound healing associated with delayed reepithelization and disordered collagen fibrillogenesis.

Themis R. Kyriakides; Drausin Wulsin; Eleni A. Skokos; Philip Fleckman; Annalisa Pirrone; J. Michael Shipley; Robert M. Senior; Paul Bornstein

Matrix metalloproteinase- (MMP-9) is involved in processes that occur during cutaneous wound healing such as inflammation, matrix remodeling, and epithelialization, To investigate its role in healing, full thickness skin wounds were made in the dorsal region of MMP-9-null and control mice and harvested up to 14 days post wounding. Gross examination and histological and immunohistochemical analysis indicated delayed healing in MMP-9-null mice. Specifically, MMP-9-null wounds displayed compromised reepithelialization and reduced clearance of fibrin clots. In addition, they exhibited abnormal matrix deposition, as evidenced by the irregular alignment of immature collagen fibers. Despite the presence of matrix abnormalities, MMP-9-null wounds displayed normal tensile strength. Ultrastructural analysis of wounds revealed the presence of large collagen fibrils, some with irregular shape. Keratinocyte proliferation, inflammation, and angiogenesis were found to be normal in MMP-9-null wounds. In addition, VEGF levels were similar in control and MMP-9-null wound extracts. To investigate the importance of MMP-9 in wound reepithelialization we tested human and murine keratinocytes in a wound migration assay and found that antibody-based blockade of MMP-9 function or MMP-9 deficiency retarded migration. Collectively, our observations reveal defective healing in MMP-9-null mice and suggest that MMP-9 is required for normal progression of wound closure.


American Journal of Human Genetics | 2012

Familial Pityriasis Rubra Pilaris Is Caused by Mutations in CARD14

Dana Fuchs-Telem; Ofer Sarig; Maurice A.M. van Steensel; Ofer Isakov; Shirli Israeli; Janna Nousbeck; Katharina Richard; Véronique Winnepenninckx; Marigje Vernooij; Noam Shomron; Jouni Uitto; Philip Fleckman; Gabriele Richard; Eli Sprecher

Pityriasis rubra pilaris (PRP) is a papulosquamous disorder phenotypically related to psoriasis. The disease has been occasionally shown to be inherited in an autosomal-dominant fashion. To identify the genetic cause of familial PRP, we ascertained four unrelated families affected by autosomal-dominant PRP. We initially mapped PRP to 17q25.3, a region overlapping with psoriasis susceptibility locus 2 (PSORS2 [MIM 602723]). Using a combination of linkage analysis followed by targeted whole-exome sequencing and candidate-gene screening, we identified three different heterozygous mutations in CARD14, which encodes caspase recruitment domain family, member 14. CARD14 was found to be specifically expressed in the skin. CARD14 is a known activator of nuclear factor kappa B signaling, which has been implicated in inflammatory disorders. Accordingly, CARD14 levels were increased, and p65 was found to be activated in the skin of PRP-affected individuals. The present data demonstrate that autosomal-dominant PRP is allelic to familial psoriasis, which was recently shown to also be caused by mutations in CARD14.


Wound Repair and Regeneration | 2010

Delayed wound healing in diabetic (db/db) mice with Pseudomonas aeruginosa biofilm challenge: a model for the study of chronic wounds

Ge Zhao; Phillip C. Hochwalt; Marcia L. Usui; Robert A. Underwood; Pradeep K. Singh; Garth A. James; Philip S. Stewart; Philip Fleckman

Chronic wounds are a major clinical problem that lead to considerable morbidity and mortality. We hypothesized that an important factor in the failure of chronic wounds to heal was the presence of microbial biofilm resistant to antibiotics and protected from host defenses. A major difficulty in studying chronic wounds is the absence of suitable animal models. The goal of this study was to create a reproducible chronic wound model in diabetic mice by the application of bacterial biofilm. Six‐millimeter punch biopsy wounds were created on the dorsal surface of diabetic (db/db) mice, subsequently challenged with Pseudomonas aeruginosa (PAO1) biofilms 2 days postwounding, and covered with semiocclusive dressings for 2 weeks. Most of the control wounds were epithelialized by 28 days postwounding. In contrast, none of biofilm‐challenged wounds were closed. Histological analysis showed extensive inflammatory cell infiltration, tissue necrosis, and epidermal hyperplasia adjacent to challenged wounds—all indicators of an inflammatory nonhealing wound. Quantitative cultures and transmission electron microscopy demonstrated that the majority of bacteria were in the scab above the wound bed rather than in the wound tissue. The model was reproducible, allowed localized cutaneous wound infections without high mortality, and demonstrated delayed wound healing following a biofilm challenge. This model may provide an approach to study the role of microbial biofilms in chronic wounds as well as the effect of specific biofilm therapy on wound healing.


Wound Repair and Regeneration | 2009

Loss of viability and induction of apoptosis in human keratinocytes exposed to Staphylococcus aureus biofilms in vitro

Kelly R. Kirker; Patrick R. Secor; Garth A. James; Philip Fleckman; Philip S. Stewart

Bacteria colonizing chronic wounds are believed to exist as polymicrobial, biofilm communities; however, there are few studies demonstrating the role of biofilms in chronic wound pathogenesis. This study establishes a novel method for studying the effect of biofilms on the cell types involved in wound healing. Cocultures of Staphylococcus aureus biofilms and human keratinocytes (HK) were created by initially growing S. aureus biofilms on tissue culture inserts then transferring the inserts to existing HK cultures. Biofilm‐conditioned medium (BCM) was prepared by culturing the insert‐supported biofilm in cell culture medium. As a control planktonic‐conditioned medium (PCM) was also prepared. Biofilm, BCM, and PCM were used in migration, cell viability, and apoptosis assays. Changes in HK morphology were followed by brightfield and confocal microscopy. After only 3 hours exposure to BCM, but not PCM, HK formed dendrite‐like extensions and displayed reduced viability. After 9 hours, there was an increase in apoptosis (p≤0.0004). At 24 hours, biofilm‐, BCM‐, and PCM‐exposed HK all exhibited reduced scratch closure (p≤0.0001). The results demonstrated that soluble products of both S. aureus planktonic cells and biofilms inhibit scratch closure. Furthermore, S. aureus biofilms significantly reduced HK viability and significantly increased HK apoptosis compared with planktonic S. aureus.


Human Mutation | 2009

Transglutaminase-1 gene mutations in autosomal recessive congenital ichthyosis: summary of mutations (including 23 novel) and modeling of TGase-1.

Matthew L. Herman; Sharifeh Farasat; Peter J. Steinbach; Ming Hui Wei; Ousmane Toure; Philip Fleckman; Patrick W. Blake; Sherri J. Bale; Jorge R. Toro

Autosomal recessive congenital ichthyosis (ARCI) is a heterogeneous group of rare cornification diseases. Germline mutations in TGM1 are the most common cause of ARCI in the United States. TGM1 encodes for the TGase‐1 enzyme that functions in the formation of the cornified cell envelope. Structurally defective or attenuated cornified cell envelop have been shown in epidermal scales and appendages of ARCI patients with TGM1 mutations. We review the clinical manifestations as well as the molecular genetics of ARCI. In addition, we characterized 115 TGM1 mutations reported in 234 patients from diverse racial and ethnic backgrounds (Caucasion Americans, Norwegians, Swedish, Finnish, German, Swiss, French, Italian, Dutch, Portuguese, Hispanics, Iranian, Tunisian, Moroccan, Egyptian, Afghani, Hungarian, African Americans, Korean, Japanese and South African). We report 23 novel mutations: 71 (62%) missense; 20 (17%) nonsense; 9 (8%) deletion; 8 (7%) splice‐site, and 7 (6%) insertion. The c.877‐2A>G was the most commonly reported TGM1 mutation accounting for 34% (147 of 435) of all TGM1 mutant alleles reported to date. It had been shown that this mutation is common among North American and Norwegian patients due to a founder effect. Thirty‐one percent (36 of 115) of all mutations and 41% (29 of 71) of missense mutations occurred in arginine residues in TGase‐1. Forty‐nine percent (35 of 71) of missense mutations were within CpG dinucleotides, and 74% (26/35) of these mutations were C>T or G>A transitions. We constructed a model of human TGase‐1 and showed that all mutated arginines that reside in the two beta‐barrel domains and two (R142 and R143) in the beta‐sandwich are located at domain interfaces. In conclusion, this study expands the TGM1 mutation spectrum and summarizes the current knowledge of TGM1 mutations. The high frequency of mutated arginine codons in TGM1 may be due to the deamination of 5′ methylated CpG dinucleotides. Hum Mutat 0, 1–12, 2009.

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Robert A. Underwood

Washington University in St. Louis

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Marcia L. Usui

University of Washington

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Garth A. James

Montana State University

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Ge Zhao

University of Washington

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