Qabar A N, Stern M S, Walz D A, Chiu J T, Timkovich R, Wall J S, Kapp O H, Vinogradov S N
Department of Biochemistry, Wayne State University School of Medicine, Detroit, MI 48201.
J Mol Biol. 1991 Dec 20;222(4):1109-29. doi: 10.1016/0022-2836(91)90596-x.
The molecular dimensions of the extracellular, hexagonal bilayer chlorocruorin of the polychaete Eudistylia vancouverii, determined by scanning transmission electron microscopy (STEM) of negatively stained specimens, were diameter of 27.5 nm and height of 18.5 nm. STEM mass measurements of unstained, freeze-dried specimens provided a molecular mass (Mm) of 3480 +/- 225 kDa. The chlorocruorin had no carbohydrate and its iron content was 0.251 +/- 0.021 wt%, corresponding to a minimum Mm of 22.4 kDa. Mass spectra and nuclear magnetic resonance spectra of the prosthetic group confirmed it to be protoheme IX with a formyl group at position 3. SDS/polyacrylamide gel electrophoresis, reversed-phase chromatography and N-terminal sequencing suggested that the chlorocruorin consists of at least three chains of approximately 30 kDa and five chains of approximately 16 kDa; the two types of subunits occur in the ratio 0.26:0.74(+/- 0.08). Complete dissociation of the chlorocruorin at neutral pH in the presence of urea or guanidine hydrochloride, followed by gel filtration, produced elution profiles consisting of three peaks, B, C and D. Fractions B and C consisted of the approximately 16 kDa chains and fraction D consisted of the approximately 30 kDa subunits. Mass measurements of particles in STEM images of unstained, freeze-dried fractions B and C provided Mm of 208 +/- 23 kDa and 65 +/- 12 kDa, respectively, in agreement with 191 +/- 13 kDa and 67 +/- 5 kDa obtained by gel filtration. Particles with Mm = 221 +/- 21 kDa were also observed in STEM images of unstained, freeze-dried chlorocruorin. These results imply that the chlorocruorin structure, in addition to the approximately 30 kDa linker subunits that have 0.26 to 0.47 heme groups/chain, comprises approximately 65 kDa tetramers and approximately 200 kDa dodecamers (trimers of tetramers) of globin chains. The stoichiometry of the tetramer and linker subunits calculated from molar amino acid compositions was 34 +/- 4 and 43 +/- 9. The complete dissociation of the chlorocruorin was accompanied by a 50 to 75% loss of the 55 +/- 14 Ca2+/mol protein, and was decreased to approximately 35% by the presence of 10 to 25 mM-Ca2+. Reassociation of dissociated chlorocruorin was maximal in the presence of 2.5 to 5 mM-Ca2+. The dodecamer and/or tetramer subunits in the absence or presence of Ca2+ exhibited very limited (less than 10%) reassociation into hexagonal bilayer structures, only in the presence of the linker subunit.(ABSTRACT TRUNCATED AT 400 WORDS)
通过对负染标本进行扫描透射电子显微镜(STEM)分析,确定多毛纲动物温哥华真蛰虫细胞外六边形双层绿血铁蛋白的分子尺寸为直径27.5纳米、高度18.5纳米。对未染色的冻干标本进行STEM质量测量,得出分子量(Mm)为3480±225千道尔顿。绿血铁蛋白不含碳水化合物,其铁含量为0.251±0.021重量%,对应最小Mm为22.4千道尔顿。辅基的质谱和核磁共振谱证实其为3位带有甲酰基的原血红素IX。十二烷基硫酸钠/聚丙烯酰胺凝胶电泳、反相色谱和N端测序表明,绿血铁蛋白至少由三条约30千道尔顿的链和五条约16千道尔顿的链组成;这两种亚基的比例为0.26:0.74(±0.08)。在尿素或盐酸胍存在下,绿血铁蛋白在中性pH条件下完全解离,随后进行凝胶过滤,得到由三个峰B、C和D组成的洗脱曲线。组分B和C由约16千道尔顿的链组成,组分D由约30千道尔顿的亚基组成。对未染色的冻干组分B和C的STEM图像中的颗粒进行质量测量,分别得到Mm为208±23千道尔顿和65±12千道尔顿,与凝胶过滤得到的191±13千道尔顿和67±5千道尔顿一致。在未染色的冻干绿血铁蛋白的STEM图像中也观察到Mm = 221±21千道尔顿的颗粒。这些结果表明,绿血铁蛋白结构除了含有每条链有0.26至0.47个血红素基团的约30千道尔顿的连接亚基外,还包括约65千道尔顿的四聚体和约200千道尔顿的十二聚体(四聚体的三聚体)球蛋白链。根据摩尔氨基酸组成计算,四聚体和连接亚基的化学计量比为34±4和43±9。绿血铁蛋白的完全解离伴随着每摩尔蛋白质55±14个钙离子损失50%至75%,在10至25毫摩尔/升钙离子存在下损失降至约35%。解离的绿血铁蛋白在2.5至5毫摩尔/升钙离子存在下重新缔合的程度最大。在不存在或存在钙离子的情况下,十二聚体和/或四聚体亚基只有在连接亚基存在时才表现出非常有限(小于10%)的重新缔合形成六边形双层结构。(摘要截于400字)