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七鳃鳗(Lampetra fluviatilis)中白细胞介素-8同源物的鉴定:趋化因子的早期进化分歧

Identification of an IL-8 homolog in lamprey (Lampetra fluviatilis): early evolutionary divergence of chemokines.

作者信息

Najakshin A M, Mechetina L V, Alabyev B Y, Taranin A V

机构信息

Institute of Cytology and Genetics, Novosibirsk, Russia.

出版信息

Eur J Immunol. 1999 Feb;29(2):375-82. doi: 10.1002/(SICI)1521-4141(199902)29:02<375::AID-IMMU375>3.0.CO;2-6.

Abstract

Subtractive hybridization was used to study river lamprey (Lampetra fluviatilis) leukocyte-specific cDNA. A clone representing the most abundant component (12%) of the leukocyte library subtracted with liver cDNA was isolated and characterized. The cDNA encodes a presumably secreted polypeptide of 101 residues. The 3' untranslated region of the cDNA contains motifs characteristic of the transiently expressing genes. Comparison of the deduced amino acid sequence with known protein sequences revealed its homology to the members of the chemokine superfamily. Designated as LFCA-1, the lamprey protein contains four conserved cysteines, of which the first two are separated by a residue, and a number of other CXC family characteristic residues. LFCA-1 has the highest similarity to the chicken EMF-1 (40%) and to the mammalian IL-8 (32-33%). However, it lacks the ELR motif essential for the function of the mammalian IL-8-related chemokines. Based on the phylogenetic analysis of the LFCA-1 relationship to the higher vertebrate chemokines, it is concluded that the evolutionary origin of the chemokine superfamily is ancient, and that the divergence of the CXC and CC families most likely occurred at the time or before the first vertebrates emerged.

摘要

消减杂交技术被用于研究河鳗(Lampetra fluviatilis)白细胞特异性cDNA。分离并鉴定了一个克隆,该克隆代表了用肝脏cDNA消减后的白细胞文库中最丰富的成分(12%)。该cDNA编码一个推测为分泌型的含101个残基的多肽。该cDNA的3'非翻译区包含瞬时表达基因的特征基序。将推导的氨基酸序列与已知蛋白质序列进行比较,发现它与趋化因子超家族成员具有同源性。这种河鳗蛋白被命名为LFCA-1,含有四个保守的半胱氨酸,其中前两个半胱氨酸被一个残基隔开,还有许多其他CXC家族特征性残基。LFCA-1与鸡的EMF-1相似度最高(40%),与哺乳动物的IL-8相似度为32 - 33%。然而,它缺乏哺乳动物IL-8相关趋化因子功能所必需的ELR基序。基于LFCA-1与高等脊椎动物趋化因子关系的系统发育分析,得出趋化因子超家族的进化起源古老,且CXC和CC家族的分化很可能发生在第一批脊椎动物出现之时或之前的结论。

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