Arachnomelia syndrome in Simmental cattle is caused by a homozygous 2-bp deletion in the molybdenum cofactor synthesis step 1 gene (MOCS1)

被引:11
作者
Buitkamp, Johannes [1 ]
Semmer, Joerdis [1 ]
Goetz, Kay-Uwe [1 ]
机构
[1] Bavarian State Res Ctr Agr, Inst Anim Breeding, D-85586 Grub, Germany
关键词
SULFITE OXIDASE; DEFICIENCY; MUTATIONS; BIOSYNTHESIS; RECEPTORS;
D O I
10.1186/1471-2156-12-11
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Background: Arachnomelia syndrome is an autosomal recessive inherited disease in cattle. Affected calves die around birth and show malformations of the skeleton mainly affecting the legs, the spinal column and the skull. A number of arachnomelia syndrome affected Simmental calves were recently detected by a surveillance system of anomalies with a peak of more than 120 recorded cases in the year 2006. The causative mutation was previously mapped to a 9 cM-region on bovine chromosome 23. We herein report the fine-mapping and identification of the gene causing arachnomelia syndrome in Simmental cattle. Results: By using a dense set of markers, the arachnomelia syndrome linked region could be refined to 1.5 cM harbouring three protein coding genes. Comparative sequencing of these genes revealed a two-bp-deletion in the bovine MOCS1 gene resulting in a frame-shift and a premature termination codon. We genotyped affected calves and their ancestors and found that all affected were homozygous for the deletion whereas all carriers were heterozygous. Furthermore, cattle from the same population, but not directly related to known carriers mostly showed the wild type genotype. Conclusions: MOCS1 encodes two proteins that are involved in the first synthesis step of molybdenum cofactor. A non functional sulfite-oxydase, one of the enzymes requiring molybdenum cofactor, leads to a similar pathology in Brown Swiss cattle. In combination the perfect association of the mutation with the phenotype and the obvious disruption of protein translation provide strong evidence for the causality of the MOCS1 mutation. Our results are the first example for an oligogenic lethal inherited disease in cattle. Furthermore, they show the potential involvement of sulfite metabolism in aberrant bone development.
引用
收藏
页数:10
相关论文
共 30 条
[1]   Assignment of the locus for arachnomelia syndrome to bovine chromosome 23 in Simmental cattle [J].
Buitkamp, J. ;
Kuehn, C. ;
Semmer, J. ;
Goetz, K.-U. .
ANIMAL GENETICS, 2009, 40 (06) :894-899
[2]   Syndrome of arachnomelia in Simmental cattle [J].
Buitkamp, Johannes ;
Luntz, Bernhard ;
Emmerling, Reiner ;
Reichenbach, Horst-Dieter ;
Weppert, Myriam ;
Schade, Benjamin ;
Meier, Norbert ;
Goetz, Kay-Uwe .
BMC VETERINARY RESEARCH, 2008, 4 (1)
[3]   Regulation of erythropoiesis by the neuronal transmembrane protein Lrfn2 [J].
Castellanos, Andres ;
Lang, Georgina ;
Frampton, Jonathan ;
Weston, Kathleen .
EXPERIMENTAL HEMATOLOGY, 2007, 35 (05) :724-734
[4]   Identification of the Bovine Arachnomelia Mutation by Massively Parallel Sequencing Implicates Sulfite Oxidase (SUOX) in Bone Development [J].
Droegemueller, Cord ;
Tetens, Jens ;
Sigurdsson, Snaevar ;
Gentile, Arcangelo ;
Testoni, Stefania ;
Lindblad-Toh, Kerstin ;
Leeb, Tosso .
PLOS GENETICS, 2010, 6 (08)
[5]   Arachnomelia in Brown Swiss cattle maps to chromosome 5 [J].
Drogemueller, Cord ;
Rossi, Marco ;
Gentile, Arcangelo ;
Testoni, Stefania ;
Joerg, Hannes ;
Stranzinger, Gerald ;
Drogemueller, Michaela ;
Glowatzki-Mullis, Marie-Louise ;
Leeb, Tosso .
MAMMALIAN GENOME, 2009, 20 (01) :53-59
[6]   REPORT ON A NEW PATIENT WITH COMBINED DEFICIENCIES OF SULFITE OXIDASE AND XANTHINE DEHYDROGENASE DUE TO MOLYBDENUM COFACTOR DEFICIENCY [J].
ENDRES, W ;
SHIN, YS ;
GUNTHER, R ;
IBEL, H ;
DURAN, M ;
WADMAN, SK .
EUROPEAN JOURNAL OF PEDIATRICS, 1988, 148 (03) :246-249
[7]   Base-calling of automated sequencer traces using phred.: I.: Accuracy assessment [J].
Ewing, B ;
Hillier, L ;
Wendl, MC ;
Green, P .
GENOME RESEARCH, 1998, 8 (03) :175-185
[8]   TAF9b (formerly TAF9L) is a bona fide TAF that has unique and overlapping roles with TAF9 [J].
Frontini, M ;
Soutoglou, E ;
Argentini, M ;
Bole-Feysot, C ;
Jost, B ;
Scheer, E ;
Tora, L .
MOLECULAR AND CELLULAR BIOLOGY, 2005, 25 (11) :4638-4649
[9]   Consed: A graphical tool for sequence finishing [J].
Gordon, D ;
Abajian, C ;
Green, P .
GENOME RESEARCH, 1998, 8 (03) :195-202
[10]   Diverse splicing mechanisms fuse the evolutionarily conserved bicistronic MOCS1A and MOCS1B open reading frames [J].
Gray, TA ;
Nicholls, RD .
RNA, 2000, 6 (07) :928-936