小鼠多能和体细胞杂交细胞的遗传稳定性可能受到其培养条件的影响。

Q4 Biochemistry, Genetics and Molecular Biology
Journal of Stem Cells Pub Date : 2011-01-01
Shramova Elena Ivanovna, Larionov Oleg Alekseevich, Khodarovich Yurii Mikhailovich, Zatsepina Olga Vladimirovna
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引用次数: 0

摘要

利用小鼠多能性畸胎癌PCC4azal细胞和增殖性脾淋巴细胞获得了一种新的杂种细胞,其标记淋巴细胞基因受到抑制,但Oct-4基因的表达不受影响;杂交细胞能够分化为心肌细胞。为了明确可能影响杂种遗传稳定性和其他性状的环境因素,我们分别对杂种的染色体总数和分化力进行了分析。特别注意的是染色体核仁组织区(NORs)的数量和转录活性,其中包含最活跃的转录核糖体基因。结果表明,所获得的杂种具有相对稳定的染色体数目,在27次传代中染色体数目减少不到5%。然而,杂交细胞在非选择性条件下的长期培养导致了一些NO-染色体的优先消除,而每个细胞中活性NORs的数量由于潜在NORs的激活而增加。相反,在选择性条件下,即在次黄碱、氨基蝶呤和胸腺嘧啶存在的情况下,携带nor的染色体总数没有改变,但观察到剩余的NORs部分失活。活性NORs数量的增加与杂交细胞向心肌细胞分化的能力直接相关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Genetic stability of murine pluripotent and somatic hybrid cells may be affected by conditions of their cultivation.

Using mouse pluripotent teratocarcinoma PCC4azal cells and proliferating spleen lymphocytes we obtained a new type of hybrids, in which marker lymphocyte genes were suppressed, but expression the Oct-4 gene was not effected; the hybrid cells were able to differentiate to cardiomyocytes. In order to specify the environmental factors which may affect the genetic stability and other hybrid properties, we analyzed the total chromosome number and differentiation potencies of hybrids respectively to conditions of their cultivation. Particular attention was paid to the number and transcription activity of chromosomal nucleolus organizing regions (NORs), which harbor the most actively transcribed - ribosomal - genes. The results showed that the hybrids obtained are characterized by a relatively stable chromosome number which diminished less than in 5% during 27 passages. However, a long-term cultivation of hybrid cells in non-selective conditions resulted in preferential elimination of some NO- chromosomes, whereas the number of active NORs per cell was increased due to activation of latent NORs. On the contrary, in selective conditions, i.e. in the presence of hypoxantine, aminopterin and thymidine, the total number of NOR-bearing chromosomes was not changed, but a partial inactivation of remaining NORs was observed. The higher number of active NORs directly correlated with the capability of hybrid cells for differentiation to cardiomyocytes.

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来源期刊
Journal of Stem Cells
Journal of Stem Cells Medicine-Transplantation
CiteScore
0.10
自引率
0.00%
发文量
1
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