Zal F, Green B N, Lallier F H, Toulmond A
Equipe Ecophysiologie, UPMC-CNRS-INSU, Station Biologique, BP 74, 29682 Roscoff Cedex, France, and Micromass UK Ltd., Tudor Road, Altrincham, Cheshire WA14 5RZ, U.K.
Biochemistry. 1997 Sep 30;36(39):11777-86. doi: 10.1021/bi9712899.
Alvinella pompejana inhabits deep-sea hydrothermal vent sites along the East-Pacific Rise, where it colonizes the walls of actively venting high-temperature chimneys. This worm is the most thermophilic metazoan known to date. In Alvinella, as in other alvinellids, oxygen transport is mainly achieved by an extracellular Hb dissolved in the vascular blood. This Hb has a molecular mass of 3833 +/- 14 kDa as revealed by multiangle laser light scattering (MALLS). Native and derivative Hb (reduced, carbamidomethylated, and deglycosylated) were analyzed by electrospray ionization mass spectrometry (ESI-MS). The data were processed by the maximum entropy deconvolution system (MaxEnt). We identified three groups of peaks for Alvinella Hb, at ca. 16, 23-26, and 50 kDa corresponding to (i) four monomeric globin chains, a1 (16 633.4), a2(16 532.4), a3 (16 419.6), and a4(16 348.9); (ii) four linker chains, L1-L4 (22 887. 1, 24 230.5, 26 233.6, and 25 974.4); and (iii) one disulfide-bonded trimer T (51 431.9) composed of globin chains b (16 477.5), c (16 916.1), and d (18 048.8). These Hbs were also subjected to SDS-PAGE analysis for comparative purposes. In addition, using the ESI-MS data we propose two alternative models for the quaternary structure of Alvinella's Hb.
庞贝蠕虫生活在东太平洋海隆的深海热液喷口区域,它在活跃喷发的高温烟囱壁上聚集。这种蠕虫是迄今为止已知的最嗜热的后生动物。和其他阿尔文蚓科动物一样,在庞贝蠕虫中,氧气运输主要通过溶解在血管血液中的细胞外血红蛋白来实现。通过多角度激光光散射(MALLS)测定,这种血红蛋白的分子量为3833±14 kDa。通过电喷雾电离质谱(ESI-MS)分析了天然和衍生的血红蛋白(还原型、氨基甲酰甲基化型和去糖基化型)。数据由最大熵反卷积系统(MaxEnt)处理。我们确定了庞贝蠕虫血红蛋白的三组峰,分别在约16 kDa、23 - 26 kDa和50 kDa处,对应于:(i)四条单体球蛋白链,a1(16 633.4)、a2(16 532.4)、a3(16 419.6)和a4(16 348.9);(ii)四条连接链,L1 - L4(22 887.1、24 230.5、26 233.6和25 974.4);以及(iii)一个由球蛋白链b(16 477.5)、c(16 916.1)和d(18 048.8)组成的二硫键连接的三聚体T(51 431.9)。为了进行比较,还对这些血红蛋白进行了SDS - PAGE分析。此外,利用ESI - MS数据,我们提出了庞贝蠕虫血红蛋白四级结构的两种替代模型。