Genomic structure of the human mitochondrial chaperonin genes: HSP60 and HSP10 are localised head to head on chromosome 2 separated by a bidirectional promoter
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Anders D. Børglum | Lars Bolund | Karsten Kristiansen | Hans Eiberg | Peter Bross | Niels Gregersen | K. Kristiansen | L. Bolund | A. Børglum | H. Eiberg | P. Bross | J. Mogensen | M. Westergaard | N. Gregersen | Jens J. Hansen | Majken Westergaard | Marit Nielsen | Jens Mogensen | J. Hansen | M. Nielsen
[1] C R Scriver,et al. Monogenic traits are not simple: lessons from phenylketonuria. , 1999, Trends in genetics : TIG.
[2] C. Harley,et al. Primary structure of a human mitochondrial protein homologous to the bacterial and plant chaperonins and to the 65-kilodalton mycobacterial antigen , 1989, Molecular and cellular biology.
[3] G. Peters,et al. The human early pregnancy factor/chaperonin 10 gene family. , 1996, Biochemical and molecular medicine.
[4] Mathew W. Wright,et al. The HUGO Gene Nomenclature Committee (HGNC) , 2001, Human Genetics.
[5] R. Gupta,et al. Nucleotide sequences and novel structural features of human and Chinese hamster hsp60 (chaperonin) gene families. , 1990, DNA and cell biology.
[6] L. Bolund,et al. Protein misfolding and degradation in genetic diseases , 1999, Human mutation.
[7] S. Gottesman,et al. Posttranslational quality control: folding, refolding, and degrading proteins. , 1999, Science.
[8] B. Mach,et al. Genetic complexity of the human hsp 60 gene. , 1996, International immunology.
[9] L. Bolund,et al. The role of chaperone-assisted folding and quality control in inborn errors of metabolism: Protein folding disorders , 2001, Journal of Inherited Metabolic Disease.
[10] A. Dürr,et al. Hereditary spastic paraplegia SPG13 is associated with a mutation in the gene encoding the mitochondrial chaperonin Hsp60. , 2002, American journal of human genetics.
[11] L. Johnson,et al. In vitro transcription of the TATAA-less mouse thymidylate synthase promoter: multiple transcription start points and evidence for bidirectionality. , 1994, Gene.
[12] Thomas Shenk,et al. The Serotonin 1a Receptor Gene Contains a TATA-less Promoter that Responds to MAZ and Sp1 (*) , 1996, The Journal of Biological Chemistry.
[13] L. Segovia,et al. Molecular characterization of the 5′ control region and of two lethal alleles affecting the hsp60 gene in Drosophila melanogaster , 1999, FEBS letters.
[14] L. Biesecker,et al. Unfolding the role of chaperones and chaperonins in human disease. , 2001, Trends in genetics : TIG.
[15] M. Ryan,et al. The genes encoding mammalian chaperonin 60 and chaperonin 10 are linked head-to-head and share a bidirectional promoter. , 1997, Gene.
[16] V. Beneš,et al. Direct primer walking on P1 plasmid DNA. , 1997, BioTechniques.
[17] A. Horwich,et al. Chaperone rings in protein folding and degradation. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[18] H. Zoghbi,et al. Identification of genes that modify ataxin-1-induced neurodegeneration , 2000, Nature.
[19] K. Nielsen,et al. A single ring is sufficient for productive chaperonin-mediated folding in vivo. , 1998, Molecular cell.
[20] L. Johnson,et al. Bidirectional promoter of the mouse thymidylate synthase gene. , 1994, Nucleic acids research.
[21] J. Frydman. Folding of newly translated proteins in vivo: the role of molecular chaperones. , 2001, Annual review of biochemistry.