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使用富集cDNA微阵列对Dt40进行基因表达、拷贝数和回文结构形成的分析。

Analysis of gene expression, copy number and palindrome formation with a Dt40 enriched cDNA microarray.

作者信息

Neiman Paul E, Burnside Joan, Elsaesser Katrina, Hwang Harry, Clurman Bruce E, Kimmel Robert, Delrow Jeff

机构信息

Fred Hutchinson Cancer Research Center, Seattle, Washington 98109, USA.

出版信息

Subcell Biochem. 2006;40:245-56. doi: 10.1007/978-1-4020-4896-8_14.

DOI:10.1007/978-1-4020-4896-8_14
PMID:17623909
Abstract

DT40 presents a unique opportunity to exploit newly available tools for chicken genomic analysis. A 13K chicken cDNA microarray representing 11447 non-overlapping ESTs has been developed. This array detects expression of 7086 DT40 genes of which_644 are over-expressed 3-fold or greater and 1585 are under-expressed 3-fold or greater relative to normal post-hatch bursal cell populations. Changes in RNA expression due to single gene alterations can be detected by expression profiling. For example, by this method, over expression of the oncogenic micro RNA bic up-regulates expression of VBP, a known regulator of Avian Leukosis Virus LTR- driven transcription with very little additional expression change, A degree of cytogenetic abnormality and instability of DT40 cells has been observed, which is characterized at the fine structure level using microarray-based comparative genome hybridization (array-CGH). The relationship between gene copy number and RNA expression levels can be assessed in the same tissue samples using the same microarray. A newly introduced technique for genome-wide analysis of palindrome formation (GAPF) detects long inverted repeats, or palindromes, which are early events in gene amplification and possibly other DNA structural change. Since both array CGH-detected copy number changes and GAPF-detected palindromes are abundant in DT40, these techniques, coupled with targeted gene deletion and replacement, may provide a powerful tool for analysis of genomic instability and its underlying genetic mechanisms.

摘要

DT40为利用新出现的鸡基因组分析工具提供了独特的机会。一种代表11447个非重叠EST的13K鸡cDNA微阵列已被开发出来。该阵列可检测7086个DT40基因的表达,其中644个基因的表达相对于正常孵化后法氏囊细胞群体过表达3倍或更高,1585个基因的表达相对于正常孵化后法氏囊细胞群体低表达3倍或更高。由于单基因改变导致的RNA表达变化可通过表达谱分析检测到。例如,通过这种方法,致癌性微小RNA bic的过表达会上调VBP的表达,VBP是禽白血病病毒LTR驱动转录的已知调节因子,而几乎没有其他额外的表达变化。已观察到DT40细胞存在一定程度的细胞遗传学异常和不稳定性,使用基于微阵列的比较基因组杂交(阵列CGH)在精细结构水平对其进行了表征。基因拷贝数与RNA表达水平之间的关系可在同一组织样本中使用同一微阵列进行评估。一种新引入的用于全基因组回文形成分析(GAPF)的技术可检测长反向重复序列或回文序列,这些是基因扩增及可能其他DNA结构变化的早期事件。由于在DT40中阵列CGH检测到的拷贝数变化和GAPF检测到的回文序列都很丰富,这些技术与靶向基因缺失和替换相结合,可能为分析基因组不稳定性及其潜在遗传机制提供强大工具。

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