Structure of the gene for human von Willebrand factor
von Willebrand factor is a large multimeric plasma protein composed of identical subunits which contain four types of repeated domains. von Willebrand factor is essential for normal hemostasis, and deficiency of von Willebrand factor is the most common inherited bleeding disorder of man. Four human...
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Veröffentlicht in: | The Journal of biological chemistry 1989-11, Vol.264 (33), p.19514-19527 |
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Sprache: | eng |
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Zusammenfassung: | von Willebrand factor is a large multimeric plasma protein composed of identical subunits which contain four types of repeated
domains. von Willebrand factor is essential for normal hemostasis, and deficiency of von Willebrand factor is the most common
inherited bleeding disorder of man. Four human genomic DNA cosmid libraries and one bacteriophage lambda library were screened
with von Willebrand factor cDNA probes. Twenty positive overlapping clones were characterized that span the entire von Willebrand
factor gene. A high-resolution restriction map was constructed for approximately 75% of the locus and a total of approximately
33.8 kilobases was sequenced on both strands including all intron-exon boundaries. The gene is approximately 178 kilobases
in length and contains 52 exons. The exons vary from 40 to 1379 base pairs in length, and the introns vary from 97 base pairs
to approximately 19.9 kilobases in length. The signal peptide and propeptide (von Willebrand antigen II) of von Willebrand
factor are encoded by 17 exons in approximately 80 kilobases of DNA while the mature subunit of von Willebrand factor and
3' noncoding region are encoded by 35 exons in the remaining approximately 100 kilobases of the gene. A number of repetitive
sequences were identified including 14 Alu repeats and a approximately 670-base pair TCTA simple repeat in intron 40 that
is polymorphic. Regions of the gene that encode homologous domains have similar structures, supporting a model for their origin
by gene segment duplication. |
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ISSN: | 0021-9258 1083-351X |
DOI: | 10.1016/s0021-9258(19)47144-5 |