首页> 外文期刊>British Journal of Haematology >Exogenous TERC alone can enhance proliferative potential, telomerase activity and telomere length in lymphocytes from dyskeratosis congenita patients.
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Exogenous TERC alone can enhance proliferative potential, telomerase activity and telomere length in lymphocytes from dyskeratosis congenita patients.

机译:单独使用外源性TERC可以增强先天性角化病患者的淋巴细胞的增殖潜能,端粒酶活性和端粒长度。

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摘要

Dyskeratosis congenita (DC) is an inherited multi-system disorder characterised by muco-cutaneous abnormalities, bone marrow failure and a predisposition to malignancy. Bone marrow failure is the principal cause of mortality and is thought to be the result of premature cell death in the haematopoietic compartment because DC cells age prematurely and tend to have short telomeres. DC is genetically heterogeneous and patients have mutations in genes that encode components of the telomerase complex (DKC1, TERC, TERT, NOP10 and NHP2), and telomere shelterin complex (TINF2), both important in telomere maintenance. Here, we transduced primary T lymphocytes and B lymphocyte lines established from patients with TERC and DKC1 mutations with wild type TERC-bearing lentiviral vectors. We found that transduction with exogenous TERC alone was capable of increasing telomerase activity in mutant T lymphocytes and B lymphocyte lines and improved the survival and thus overall growth of B-lymphocyte lines over a prolonged period, regardless of their disease mutation. Telomeres in TERC-treated lines were longer than in the untreated cultures. This is the first study of its kind in DC lymphocytes and the first to demonstrate that transduction with TERC alone can improve cell survival and telomere length without the need for exogenous TERT.
机译:先天性角化病(DC)是一种遗传性多系统疾病,其特征是皮肤黏膜异常,骨髓衰竭和易患恶性肿瘤。骨髓衰竭是导致死亡的主要原因,并且被认为是造血隔室中细胞过早死亡的结果,因为DC细胞过早老化且端粒较短。 DC具有遗传异质性,患者的基因编码端粒酶复合物(DKC1,TERC,TERT,NOP10和NHP2)和端粒遮蔽素复合物(TINF2)的成分均具有突变,这两者在端粒维护中都很重要。在这里,我们用携带野生型TERC的慢病毒载体转导了从具有TERC和DKC1突变的患者中建立的原代T淋巴细胞和B淋巴细胞系。我们发现,单独使用外源TERC进行的转导能够增加突变T淋巴细胞和B淋巴细胞系中的端粒酶活性,并改善了B淋巴细胞系的延长的生存期,从而提高了其总体生长,无论其疾病突变如何。 TERC处理的品系中的端粒长于未处理的培养物中。这是首次在DC淋巴细胞中进行此类研究,并且首次证明仅使用TERC进行转导即可提高细胞存活率和端粒长度,而无需外源TERT。

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