Cellura Cinzia, Toubiana Mylène, Parrinello Nicolo, Roch Philippe
Pathogens and Immunity, UMR CNRS EcoLag, University of Montpellier 2, cc 093, Place E. Bataillon, 34095 Montpellier Cedex 05, France.
Dev Comp Immunol. 2006;30(11):984-97. doi: 10.1016/j.dci.2005.12.009. Epub 2006 Jan 31.
Complete sequence of HSP70 cDNA from the mussel, Mytilus galloprovincialis was established before quantifying its expression following moderate heat shock or injection of heat-killed bacteria. HSP70 cDNA is comprised of 2378 bp including one ORF of 654 aa, with a predicted 70 bp 5'-UTR and a 343 bp 3'-UTR (GenBank, 18 Jan 05, AY861684). Alignment identity ranged from 89% for Crassostrea ariakensis to 72% for C. virginica. Curiously, HSP70 gene and cDNA sequences from M. galloprovincialis, deposited later (03 and 27 May), show only 73% identity with the present sequence. Meanwhile, characteristic motifs of the HSP70 family were located in conserved positions. Expression of HSP70 gene was quantified on circulating hemocyte mRNA using Q-PCR after RT using random hexaprimers. Housekeeping gene was 28S rRNA. Four stresses were applied: heat shock that consisted of immersing mussels for 90 min at 30 degrees C and returning them to 20 degrees C sea water, one injection of heat-killed Gram-negative bacteria, Vibrio splendidus LGP32, one injection of heat-killed Gram-negative bacteria Vibrio anguillarum, one injection of heat-killed Gram-positive bacteria Micrococcus lysodeikticus. We found no significant modification of 28S rRNA gene expression. Significant increase of 5.2 +/- 0.4 fold the ratio HSP70/28S rRNA was observed 6 h after heat shock and was maximum at 15 h (6.1 +/- 1.1), and still significant after 24 h (1.7 +/- 0.03). Similarly, injecting V. anguillarum resulted in a significant increase of 2.7 +/- 0.1 after 12 h. Expression was maximum after 48 h (5.2 +/- 0.05) and returned to baseline after 72 h. In contrast, injecting V. splendidus or M. lysodeikticus failed to significantly modulate HSP70 gene expression at least during the first 3 days post-injection. Consequently, mussel hemocytes appeared to discriminate between pathogenic and non-pathogenic Vibrios, as well as between Gram-negative and Gram-positive bacteria.
在对皱纹盘鲍热休克或注射热灭活细菌后HSP70的表达进行定量分析之前,已确定了其HSP70 cDNA的完整序列。HSP70 cDNA由2378个碱基对组成,包括一个654个氨基酸的开放阅读框,预测的5'-非翻译区为70个碱基对,3'-非翻译区为343个碱基对(GenBank,2005年1月18日,AY861684)。序列比对的一致性范围从近江牡蛎的89%到弗吉尼亚牡蛎的72%。奇怪的是,后来(5月3日和27日)提交的皱纹盘鲍HSP70基因和cDNA序列与当前序列的一致性仅为73%。同时,HSP70家族的特征基序位于保守位置。使用随机六聚体进行逆转录后,通过实时定量PCR对循环血细胞mRNA上的HSP70基因表达进行定量。管家基因是28S rRNA。施加了四种应激:热休克,即将贻贝在30℃下浸泡90分钟,然后放回20℃的海水中;注射一次热灭活的革兰氏阴性菌灿烂弧菌LGP32;注射一次热灭活的革兰氏阴性菌鳗弧菌;注射一次热灭活的革兰氏阳性菌溶壁微球菌。我们发现28S rRNA基因表达没有显著变化。热休克后6小时观察到HSP70/28S rRNA比值显著增加5.2±0.4倍,在第15小时达到最大值(6.1±1.1),24小时后仍显著(1.7±0.03)。同样,注射鳗弧菌后12小时导致显著增加2.7±0.1。48小时后表达达到最大值(5.2±0.05),72小时后恢复到基线水平。相比之下,注射灿烂弧菌或溶壁微球菌至少在注射后的前3天未能显著调节HSP70基因表达。因此,贻贝血细胞似乎能够区分致病性和非致病性弧菌,以及革兰氏阴性菌和革兰氏阳性菌。