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首页> 外文期刊>BMC Molecular Biology >Functional characterization and identification of mouse Rad51d splice variants
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Functional characterization and identification of mouse Rad51d splice variants

机译:小鼠Rad51d剪接变体的功能表征和鉴定

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Background The homologous recombination (HR) pathway is vital for maintaining genomic integrity through the restoration of double-stranded breaks and interstrand crosslinks. The RAD51 paralogs (RAD51B, RAD51C, RAD51D, XRCC2, XRCC3) are essential for this process in vertebrates, and the RAD51D paralog is unique in that it participates in both HR repair and telomere maintenance. RAD51D is also known to directly interact with the RAD51C and XRCC2 proteins. Rad51d splice variants have been reported in mouse and human tissues, supportive of a role for alternative splicing in HR regulation. The present study evaluated the interaction of the Rad51d splice isoform products with RAD51C and XRCC2 and their expression patterns.Results Yeast-2-hybrid analysis was used to determine that the Mus musculus Rad51d splice variant product RAD51DΔ7b (deleted for residues 219 through 223) was capable of interacting with both RAD51C and XRCC2 and that RAD51D+int3 interacted with XRCC2. In addition, the linker region (residues 54 through 77) of RAD51D was identified as a region that potentially mediates binding with XRCC2. Cellular localization, detected by EGFP fusion proteins, demonstrated that each of the splice variant products tested was distributed throughout the cell similar to the full-length protein. However, none of the splice variants were capable of restoring resistance of Rad51d-deficient cell lines to mitomycin C. RT-PCR expression analysis revealed that Rad51dΔ3 (deleted for exon 3) and Rad51dΔ5 (deleted for exon 5)transcripts display tissue specific expression patterns with Rad51dΔ3 being detected in each tissue except ovary and Rad51dΔ5 not detected in mammary gland and testis. These expression studies also led to the identification of two additional Rad51d ubiquitously expressed transcripts, one deleted for both exon 9 and 10 and one deleted for only exon 10.Conclusion These results suggest Rad51d alternative splice variants potentially modulate mechanisms of HR by sequestering either RAD51C or XRCC2.
机译:背景同源重组(HR)途径对于通过恢复双链断裂和链间交联来维持基因组完整性至关重要。 RAD51旁系同源物(RAD51B,RAD51C,RAD51D,XRCC2,XRCC3)对于脊椎动物的这一过程是必不可少的,而RAD51D旁系同源物的独特之处在于它参与了HR修复和端粒维护。还已知RAD51D与RAD51C和XRCC2蛋白直接相互作用。已经在小鼠和人类组织中报道了Rad51d剪接变体,支持在HR调节中替代剪接的作用。本研究评估了Rad51d剪接异构体产物与RAD51C和XRCC2的相互作用以及它们的表达模式。结果采用酵母2杂交分析确定了小家鼠Rad51d剪接变体产物RAD51DΔ7b(缺失了219至223位残基)。能够与RAD51C和XRCC2进行交互,并且RAD51D + int3与XRCC2进行交互。此外,RAD51D的接头区域(第54至77位残基)被鉴定为可能介导与XRCC2结合的区域。通过EGFP融合蛋白检测到的细胞定位表明,测试的每个剪接变体产物均与全长蛋白相似地分布在整个细胞中。但是,没有一个剪接变体能够恢复缺乏Rad51d的细胞系对丝裂霉素C的抗性。RT-PCR表达分析显示Rad51dΔ3(对于外显子3删除)和Rad51dΔ5(对于外显子5删除)转录本显示出组织特异性表达模式除卵巢外,在每个组织中均检测到Rad51dΔ3,而在乳腺和睾丸中未检测到Rad51dΔ5。这些表达研究还导致鉴定了另外两个普遍表达的Rad51d转录物,一个缺失第9外显子和10外显子,一个缺失仅外显子10。 XRCC2。

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