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首页> 外文期刊>British Journal of Haematology >A high rate of telomeric sister chromatid exchange occurs in chronic lymphocytic leukaemia B-cells
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A high rate of telomeric sister chromatid exchange occurs in chronic lymphocytic leukaemia B-cells

机译:慢性淋巴细胞性白血病B细胞发生端粒姊妹染色单体交换率高

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摘要

Cancer cells protect their telomere ends from erosion through reactivation of telomerase or by using the Alternative Lengthening of Telomere (ALT) mechanism that depends on homologous recombination. Chronic lymphocytic leukaemia (CLL) B cells are characterized by almost no telomerase activity, shelterin deregulation and telomere fusions. To characterize telomeric maintenance mechanisms in B-CLL patients, we measured their telomere length, telomerase expression and the main hallmarks of the ALT activity i.e. C-circle concentration, an extra-chromosomal telomere repeat (ECTR), and the level of telomeric sister chromatid exchange (T-SCE) rate. Patients showed relative homogenous telomere length although almost no TERT transcript and nearly no C-circle were evidenced. Nevertheless, compared with normal B cells, B-CLL cells showed an increase in T-SCE rate that was correlated with a strong down-regulation of the topoisomerase III alpha (TOP3A) expression, involved in the dissolution of Holliday Junctions (HJ), together with an increased expression of SLX1A, SLX4, MUS81 and GEN1, involved in the resolution of HJ. Altogether, our results suggest that the telomere maintenance mechanism of B-CLL cells do not preferentially use telomerase or ALT. Rather, the rupture of the dissolvasome/resolvasome balance may increase telomere shuffling that could homogenize telomere length, slowing telomere erosion in this disease.
机译:癌细胞通过重新激活端粒酶或通过使用依赖于同源重组的端粒替代延长(ALT)机制来保护端粒末端免受侵蚀。慢性淋巴细胞性白血病(CLL)B细胞的特征是几乎没有端粒酶活性,庇护蛋白失调和端粒融合。为了表征B-CLL患者的端粒维持机制,我们测量了他们的端粒长度,端粒酶表达和ALT活性的主要标志,例如C环浓度,染色体端粒重复序列(ECTR)和端粒姐妹染色单体的水平。交换(T-SCE)汇率。患者显示出相对均匀的端粒长度,尽管几乎没有TERT转录本和C环的证据。不过,与正常B细胞​​相比,B-CLL细胞显示T-SCE速率增加,这与拓扑异构酶IIIα(TOP3A)表达的强烈下调有关,参与了霍利迪结(HJ)的溶解,以及SLX1A,SLX4,MUS81和GEN1的表达增加,参与了HJ的解析。总之,我们的结果表明B-CLL细胞的端粒维持机制并不优先使用端粒酶或ALT。相反,溶酶体/溶酶体平衡的破坏可能会增加端粒改组,使端粒长度均匀,从而减慢端粒侵蚀。

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