The MC1R Gene and Youthful Looks
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Jeanine J. Houwing-Duistermaat | P. Eline Slagboom | Luba M. Pardo | Albert Hofman | Manfred Kayser | Hae-Won Uh | André G. Uitterlinden | Changqing Zeng | Fan Liu | Marian Beekman | Joris Deelen | A. Hofman | A. Uitterlinden | Changqing Zeng | J. Houwing-Duistermaat | M. Beekman | J. Deelen | P. Slagboom | H. Uh | A. Wollstein | M. Kayser | A. Craen | L. Pardo | T. Nijsten | L. Jacobs | D. Gunn | D. Heemst | Andreas Wollstein | Tamar Nijsten | Diana van Heemst | Anton J.M. de Craen | Merel A. Hamer | Japal S. Lall | Leonie Jacobs | Peter G. Murray | David A. Gunn | M. A. Hamer | Fan Liu | J. S. Lall | A. Uitterlinden | P. Slagboom | A. Hofman | Andreas Wollstein | J. Houwing-Duistermaat | Fan Liu
[1] A Hofman,et al. Validation of image analysis techniques to measure skin aging features from facial photographs , 2015, Skin research and technology : official journal of International Society for Bioengineering and the Skin (ISBS) [and] International Society for Digital Imaging of Skin (ISDIS) [and] International Society for Skin Imaging.
[2] A. Stratigos,et al. Melanocortin 1 Receptor Variants: Functional Role and Pigmentary Associations , 2011, Photochemistry and photobiology.
[3] Michael Catt,et al. Why Some Women Look Young for Their Age , 2009, PloS one.
[4] Current Biology , 2012, Current Biology.
[5] D. Duffy,et al. Multiple pigmentation gene polymorphisms account for a substantial proportion of risk of cutaneous malignant melanoma. , 2010, The Journal of investigative dermatology.
[6] R. Sturm,et al. MC1R variant allele effects on UVR-induced phosphorylation of p38, p53, and DDB2 repair protein responses in melanocytic cells in culture. , 2012, The Journal of investigative dermatology.
[7] O. Delaneau,et al. A genome-wide association study in Caucasian women points out a putative role of the STXBP5L gene in facial photoaging. , 2013, The Journal of investigative dermatology.
[8] P. Slagboom,et al. Lifestyle and youthful looks , 2015, The British journal of dermatology.
[9] L. Pardo,et al. Perceived skin colour seems a swift, valid and reliable measurement , 2015, The British journal of dermatology.
[10] Jutta Gampe,et al. Genome-wide association meta-analysis of human longevity identifies a novel locus conferring survival beyond 90 years of age , 2014, Human molecular genetics.
[11] Alireza Moayyeri,et al. The UK Adult Twin Registry (TwinsUK Resource) , 2012, Twin Research and Human Genetics.
[12] Monique M. B. Breteler,et al. The Rotterdam Study: 2016 objectives and design update , 2015, European Journal of Epidemiology.
[13] W. Branicki,et al. Potential association of single nucleotide polymorphisms in pigmentation genes with the development of basal cell carcinoma , 2012, The Journal of dermatology.
[14] Manfred Kayser,et al. Improving human forensics through advances in genetics, genomics and molecular biology , 2011, Nature Reviews Genetics.
[15] N. Gibran,et al. Spatial and Temporal Localization of the Melanocortin 1 Receptor and Its Ligand α–Melanocyte-Stimulating Hormone during Cutaneous Wound Repair , 2011, The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society.
[16] A. D. de Craen,et al. Facial appearance reflects human familial longevity and cardiovascular disease risk in healthy individuals. , 2013, The journals of gerontology. Series A, Biological sciences and medical sciences.
[17] Jeanine J. Houwing-Duistermaat,et al. Genotype-Based Score Test for Association Testing in Families , 2015, Statistics in Biosciences.
[18] Jochen K. Lennerz,et al. An ultraviolet-radiation-independent pathway to melanoma carcinogenesis in the red hair / fair skin background , 2012 .
[19] Nicholas G. Martin,et al. Genetics of skin color variation in Europeans: genome-wide association studies with functional follow-up , 2015, Human Genetics.
[20] Yurii S. Aulchenko,et al. Detecting Low Frequent Loss-of-Function Alleles in Genome Wide Association Studies with Red Hair Color as Example , 2011, PloS one.
[21] M. Beekman,et al. Nonagenarian Siblings and Their Offspring Display Lower Risk of Mortality and Morbidity than Sporadic Nonagenarians: The Leiden Longevity Study , 2009, Journal of the American Geriatrics Society.
[22] Rajiv Kumar,et al. Risk factors for keratinocyte skin cancer in patients diagnosed with melanoma, a large retrospective study. , 2016, European journal of cancer.
[23] Kaare Christensen,et al. Perceived age as clinically useful biomarker of ageing: cohort study , 2009, BMJ : British Medical Journal.
[24] F. Hu,et al. A Genome-Wide Association Study Identifies Novel Alleles Associated with Hair Color and Skin Pigmentation , 2008, PLoS genetics.
[25] Albert Hofman,et al. A Genome-Wide Association Study Identifies the Skin Color Genes IRF4, MC1R, ASIP, and BNC2 Influencing Facial Pigmented Spots. , 2015, The Journal of investigative dermatology.
[26] Bernard Tiddeman,et al. Prototyping and Transforming Facial Textures for Perception Research , 2001, IEEE Computer Graphics and Applications.
[27] Manuel A. R. Ferreira,et al. PLINK: a tool set for whole-genome association and population-based linkage analyses. , 2007, American journal of human genetics.
[28] Howard Y. Chang,et al. Identification of Genes Promoting Skin Youthfulness by Genome-Wide Association Study , 2013, The Journal of investigative dermatology.
[29] K. Christensen,et al. Perceived age as a biomarker of ageing: a clinical methodology , 2008, Biogerontology.
[30] Manfred Kayser,et al. Forensic DNA Phenotyping: Predicting human appearance from crime scene material for investigative purposes. , 2015, Forensic science international. Genetics.
[31] K. Christensen,et al. Mortality is Written on the Face. , 2016, The journals of gerontology. Series A, Biological sciences and medical sciences.
[32] R. Westendorp,et al. Melanocortin-1 receptor gene variants determine the risk of nonmelanoma skin cancer independently of fair skin and red hair. , 2001, American journal of human genetics.
[33] Qiong Zhou,et al. Insufficient expression of the melanocortin‐1 receptor by human dermal fibroblasts contributes to excess collagen synthesis in keloid scars , 2013, Experimental dermatology.
[34] Marian Beekman,et al. Evidence of genetic enrichment for exceptional survival using a family approach: the Leiden Longevity Study , 2006, European Journal of Human Genetics.
[35] Albert Hofman,et al. IRF4, MC1R and TYR genes are risk factors for actinic keratosis independent of skin color. , 2015, Human molecular genetics.
[36] Ian Jackson,et al. Variants of the melanocyte–stimulating hormone receptor gene are associated with red hair and fair skin in humans , 1995, Nature Genetics.
[37] R. Westendorp,et al. The melanocortin-1-receptor gene is the major freckle gene. , 2001, Human molecular genetics.
[38] Laurence Ambroisine,et al. Functional MC1R-gene variants are associated with increased risk for severe photoaging of facial skin. , 2010, The Journal of investigative dermatology.