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SAMHD1 is mutated recurrently in chronic lymphocytic leukemia and is involved in response to DNA damage.

Clifford, Ruth; Louis, Tania; Robbe, Pauline; Ackroyd, Sam; Burns, Adam; Timbs, Adele T; Wright Colopy, Glen; Dreau, Helene; Sigaux, Francois; Judde, Jean Gabriel; Rotger, Margalida; Telenti, Amalio; Lin, Yea-Lih; Pasero, Philippe; Maelfait, Jonathan; Titsias, Michalis; Cohen, Dena R; Henderson, Shirley J; Ross, Mark T; Bentley, David; Hillmen, Peter; Pettitt, Andrew; Rehwinkel, Jan; Knight, Samantha J L; Taylor, Jenny C; Crow, Yanick J; Benkirane, Monsef; Schuh, Anna

Blood. 2014;123(7):1021-31.

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Abstract

SAMHD1 is a deoxynucleoside triphosphate triphosphohydrolase and a nuclease that restricts HIV-1 in noncycling cells. Germ-line mutations in SAMHD1 have been described in patients with Aicardi-Goutières syndrome (AGS), a congenital autoimmune disease. In a previous longitudinal whole genome sequencing study of chronic lymphocytic leukemia (CLL), we revealed a SAMHD1 mutation as a potential founding event. Here, we describe an AGS patient carrying a pathogenic germ-line SAMHD1 mutation who developed CLL at 24 years of age. Using clinical trial samples, we show that acquired SAMHD1 mutations are associated with high variant allele frequency and reduced SAMHD1 expression and occur in 11% of relapsed/refractory CLL patients. We provide evidence that SAMHD1 regulates cell proliferation and survival and engages in specific protein interactions in response to DNA damage. We propose that SAMHD1 may have a function in DNA repair and that the presence of SAMHD1 mutations in CLL promotes leukemia development.

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Manchester eScholar ID:
uk-ac-man-scw:230903
Created by:
Crow, Yanick
Created:
10th August, 2014, 14:29:32
Last modified by:
Crow, Yanick
Last modified:
10th August, 2014, 14:29:32

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