Y Wang, K R Olson, M P Smith, M J Russell, J M Conlon
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引用次数: 26
摘要
非四足动物的内皮素(ET)从未在结构上或生物学上被表征过。从钢头鳟鱼(Oncorhynchus mykiss)的肾脏提取液中分离到具有21个氨基酸残基的单分子形式的鳟鱼ET,其主要结构为cys - ser - cys - ala - thr - ph - leu - asp - lys - hys - glu10 - cys - val - tyr - ph - cys - his -L eu-Asp-Ile-Ile20-Trp。与人类ET-2相比,该氨基酸序列仅显示了3个取代(Ala4- >Ser, Thr5- >Ser和Phe6- >Trp),表明该肽的结构在进化过程中得到了很好的保守,并且在鳟鱼中pre - pro内皮素的翻译后加工途径可能与哺乳动物相似。合成鳟鱼ET产生浓度依赖性的离体血管组织环收缩,来自鳟鱼出鳃动脉(EBA;pD2 = 7。90 +/- 0.06, n = 5),腹腔肠系膜动脉(pD2 = 8.03 +/- 0。4例,n = 4),前主静脉(ACV;pD2 = 8.57 +/- 0.25, n = 4),大鼠腹主动脉(AO;pD2 = 8.86 +/- 0.08, n = 7)。鳟鱼和大鼠血管对哺乳动物ET-1的敏感性高于鳟鱼(人类ET-1的pD(2): EBA = 9.12 +/- 0.14;Acv = 9.90 +/- 0.15;AO = 8.86 +/- 0.08),但两种肽在这些血管中产生的最大张力无显著差异。
Purification, structural characterization, and myotropic activity of endothelin from trout, Oncorhynchus mykiss.
Endothelin (ET) from a nontetrapod species has never been characterized, either structurally or biologically. A single molecular form of trout ET with 21-amino-acid residues was isolated in pure form from an extract of the kidney of the steelhead trout, Oncorhynchus mykiss and its primary structure established as Cys-Ser-Cys-Ala-Thr-Phe-Leu-Asp-Lys-Glu10-Cys-Val-Tyr-Phe-Cys-His- L eu-Asp-Ile-Ile20-Trp. This amino acid sequence shows only three substitutions (Ala4-->Ser, Thr5-->Ser, and Phe6-->Trp) compared with human ET-2, demonstrating that the structure of the peptide has been well conserved during evolution and that the pathway of posttranslational processing of preproendothelin in the trout is probably similar to that in mammals. Synthetic trout ET produced concentration-dependent constrictions of isolated rings of vascular tissue from trout efferent branchial artery (EBA; pD2 = 7. 90 +/- 0.06, n = 5), caeliacomesenteric artery (pD2 = 8.03 +/- 0. 04, n = 4), anterior cardinal vein (ACV; pD2 = 8.57 +/- 0.25, n = 4), and rat abdominal aorta (AO; pD2 = 8.86 +/- 0.08, n = 7). Trout and rat vessels were more sensitive to mammalian ET-1 than to trout ET (pD(2) for human ET-1 in: EBA = 9.12 +/- 0.14; ACV = 9.90 +/- 0.15; AO = 8.86 +/- 0.08), but there was no significant difference in the maximum tension produced by either peptide in these vessels.