Thrombotic thrombocytopenic purpura (TTP) is a life-threatening systemic il
lness of abrupt onset and unknown cause. Proteolysis of the blood-clotting
protein von Willebrand factor (VWF) observed in normal plasma is decreased
in TTP patients. However, the identity of the responsible protease and its
role in the pathophysiology of TTP remain unknown. We performed genome-wide
linkage analysis in four pedigrees of humans with congenital TTP and mappe
d the responsible genetic locus to chromosome 9q34. A predicted gene in the
identifed interval corresponds to a segment of a much larger transcript, i
dentifying a new member of the ADAMTS family of zinc metalloproteinase gene
s (ADAMTS13). Analysis of patients' genomic DNA identified 12 mutations in
the ADAMTS13 gene, accounting for 14 of the 15 disease alleles studied. We
show that deficiency of ADAMTS13 is the molecular mechanism responsible for
TTP, and suggest that physiologic proteolysis of VWF and/or other ADAMTS13
substrates is required for normal vascular homeostasis.