Telomere attrition becomes an instrument for clonal selection in aging hematopoiesis and leukemogenesis.

端粒损耗成为衰老造血和白血病发生过程中克隆选择的工具

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作者:McLoughlin Matthew A, Cheloor Kovilakam Sruthi, Dunn William G, Gu Muxin, Tobin Jake, Pershad Yash, Williams Nicholas, Leongamornlert Daniel, Dawson Kevin, Bond Laura, Marando Ludovica, Wen Sean, Wilson Rachael, Valenzano Giampiero, Symeonidou Vasiliki, Rak Justyna, Damaskou Aristi, Gozdecka Malgorzata, Liu Xiaoxuan, Barcena Clea, Nomdedeu Josep, Costeas Paul, Dimitriou Ioannis D, Fiorillo Edoardo, Orrù Valeria, de Almeida Jose Guilherme, McKerrell Thomas, Cullen Matthew, Mohorianu Irina, Foukaneli Theodora, Warren Alan J, Wong Chi, Follows George, Godfrey Anna L, Gudgin Emma, Cucca Francesco, McKinney Eoin, Baxter E Joanna, Gerstung Moritz, Mitchell Jonathan, Wiseman Daniel, Bick Alexander G, Fabre Margarete, Quiros Pedro M, Nangalia Jyoti, Kar Siddhartha, Vassiliou George S
The mechanisms through which mutations in splicing factor genes drive clonal hematopoiesis (CH) and myeloid malignancies, and their close association with advanced age, remain poorly understood. Here we show that telomere maintenance plays an important role in this phenomenon. First, by studying 454,098 UK Biobank participants, we find that, unlike most CH subtypes, splicing-factor-mutant CH is more common in those with shorter genetically predicted telomeres, as is CH with mutations in PPM1D and the TERT gene promoter. We go on to show that telomere attrition becomes an instrument for clonal selection in advanced age, with splicing factor mutations 'rescuing' HSCs from critical telomere shortening. Our findings expose the lifelong influence of telomere maintenance on hematopoiesis and identify a potential shared mechanism through which different splicing factor mutations drive leukemogenesis. Understanding the mechanistic basis of these observations can open new therapeutic avenues against splicing-factor-mutant CH and hematological or other cancers.

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