Pellagra‐like condition is xeroderma pigmentosum/Cockayne syndrome complex and niacin confers clinical benefit
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H. Hassan | M. Mukhtar | H. Hijazi | S. Ansari | N. Ibrahim | F. Alkuraya | Z. Karrar | M. Salih | Manar Hamad | Serin Salih | K. A. Mohamed | Manar H. A. Hamad
[1] A. Sarasin,et al. Novel XPG (ERCC5) Mutations Affect DNA Repair and Cell Survival after Ultraviolet but not Oxidative Stress , 2013, Human mutation.
[2] F. Alkuraya. Discovery of Rare Homozygous Mutations from Studies of Consanguineous Pedigrees , 2012, Current protocols in human genetics.
[3] E. Jacobson,et al. Effects of Niacin Restriction on Sirtuin and PARP Responses to Photodamage in Human Skin , 2012, PloS one.
[4] Sikandar G. Khan,et al. Xeroderma pigmentosum complementation group G patient with a novel homozygous missense mutation and no neurological abnormalities , 2012, Experimental dermatology.
[5] A. Anstey,et al. Pellagra: a review with emphasis on photosensitivity , 2011, The British journal of dermatology.
[6] I. Namer,et al. Neuroimaging In Cockayne Syndrome , 2010, American Journal of Neuroradiology.
[7] E. Lam,et al. Disorders of nucleotide excision repair: the genetic and molecular basis of heterogeneity , 2009, Nature Reviews Genetics.
[8] R. Wood,et al. New insights into the combined Cockayne/xeroderma pigmentosum complex: human XPG protein can function in transcription factor stability. , 2007, Molecular cell.
[9] J. Egly,et al. XPG stabilizes TFIIH, allowing transactivation of nuclear receptors: implications for Cockayne syndrome in XP-G/CS patients. , 2007, Molecular cell.
[10] Graham R Taylor,et al. Interactive visual analysis of SNP data for rapid autozygosity mapping in consanguineous families , 2006, Human mutation.
[11] M. Ikawa,et al. Identification of the XPG Region That Causes the Onset of Cockayne Syndrome by Using Xpg Mutant Mice Generated by the cDNA-Mediated Knock-In Method , 2004, Molecular and Cellular Biology.
[12] P. Cooper,et al. The Single-Strand DNA Binding Activity of Human PC4 Prevents Mutagenesis and Killing by Oxidative DNA Damage , 2004, Molecular and Cellular Biology.
[13] Sikandar G. Khan,et al. Relationship of neurologic degeneration to genotype in three xeroderma pigmentosum group G patients. , 2002, The Journal of investigative dermatology.
[14] D. Dickson,et al. Xeroderma pigmentosum/cockayne syndrome complex: first neuropathological study and review of eight other cases. , 2001, European journal of paediatric neurology : EJPN : official journal of the European Paediatric Neurology Society.
[15] E. Jacobson,et al. Mapping the role of NAD metabolism in prevention and treatment of carcinogenesis. , 1999 .
[16] S. A. Leadon,et al. A common mutational pattern in Cockayne syndrome patients from xeroderma pigmentosum group G: implications for a second XPG function. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[17] S. West,et al. XPG endonuclease makes the 3′ incision in human DNA nucleotide excision repair , 1994, Nature.
[18] D. Bender,et al. Lethal familial pellagra-like skin lesion associated with neurologic and developmental impairment and the development of cataracts. , 1985, Pediatrics.
[19] M. Statter,et al. Familial pellagra-like skin rash with neurological manifestations. , 1981, Archives of disease in childhood.
[20] J. Cleaver. Defective Repair Replication of DNA in Xeroderma Pigmentosum , 1968, Nature.