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基于无辅助禽白血病病毒(ALV)的逆转录病毒载体在早期鸡胚中的原位表达。

In situ expression of helper-free avian leukosis virus (ALV)-based retrovirus vectors in early chick embryos.

作者信息

Thomas J L, Afanassieff M, Cosset F L, Molina R M, Ronfort C, Drynda A, Legras C, Chebloune Y, Nigon V M, Verdier G

机构信息

Laboratoire de Biologie Cellulaire, INRA, CNRS UMR106, Université Claude Bernard, Villeurbanne, France.

出版信息

Int J Dev Biol. 1992 Jun;36(2):215-27.

PMID:1326313
Abstract

Defective avian leukosis-based vectors expressing the bacterial lacZ gene were used as helper-free preparations to infect early stage Brown-Leghorn embryos. Both in toto X-gal staining and DNA analysis using Southern blot technique were applied to detect virus integration and expression. Our results demonstrate a low efficiency of in vitro infection in early stages of embryonic development. Southern blot analysis reveals that only 1% of embryonic cells integrate the vector genome after infection using 2 to 12 virus particle per embryonic cell. In situ expression of the lacZ marker gene was detected in only 0.06% of embryonic cells. These results lead us to conclude that only 6% of infected cells express efficiently the lacZ marker gene. This low level of expression could result from avian leukosis virus LTRs inhibition in chicken embryonic cells at an early stage of development. In spite of the low efficiency of infection, no evidence for tissue restrictive expression was observed. However, vector containing LTRs from RAV-2 virus allows preferential expression of provirus vector in neural tube tissue, whereas cardiac localization of the preferential expression was observed using vector containing the RAV-1 LTRs. The chronological analysis of the marker gene expression in terms of location of expression foci and sizes of these foci, lead us to hypothesize the putative regulation of retrovirus expression linked to embryonic development.

摘要

表达细菌β-半乳糖苷酶基因的缺陷型禽白血病载体被用作无辅助病毒制剂,用于感染早期的白来航鸡胚胎。采用全胚胎X-gal染色和Southern印迹技术进行DNA分析,以检测病毒整合和表达情况。我们的结果表明,在胚胎发育早期,体外感染效率较低。Southern印迹分析显示,在每个胚胎细胞使用2至12个病毒颗粒进行感染后,只有1%的胚胎细胞整合了载体基因组。仅在0.06%的胚胎细胞中检测到β-半乳糖苷酶标记基因的原位表达。这些结果使我们得出结论,只有6%的感染细胞能有效表达β-半乳糖苷酶标记基因。这种低水平的表达可能是由于禽白血病病毒LTRs在发育早期对鸡胚胎细胞的抑制作用。尽管感染效率较低,但未观察到组织限制性表达的证据。然而,含有RAV-2病毒LTRs的载体可使前病毒载体在神经管组织中优先表达,而使用含有RAV-1 LTRs的载体时,则观察到优先表达定位于心脏。根据表达灶的位置和大小对标记基因表达进行时间分析,使我们推测逆转录病毒表达可能与胚胎发育有关。

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