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大鼠血清富含精氨酸载脂蛋白的放射免疫测定

Radioimmunoassay of arginine-rich apolipoprotein of rat serum.

作者信息

Fainaru M, Havel R J, Imaizumi K

出版信息

Biochim Biophys Acta. 1977 Jan 25;490(1):144-55. doi: 10.1016/0005-2795(77)90114-3.

Abstract

A double-antibody radioimmunoassay was developed for quantification of rat arginine-rich apolipoprotein in sodium decyl sulfate. Arginine-rich protein, labeled with 125I by the chloramine-T method, had the same chromatographic characteristics on Sephadex G-200 as unlabeled arginine-rich protein and up to 70% of 125I-labeled arginine-rich protein was precipitated by antisera to arginine-rich protein in rabbits. The assay is sensitive at the level of 1-10 ng and has intraassay and interassay coefficients of variation of 5.4 and 6.8%, respectively. The specificity of the assay was established by competitive displacement of 125I-labeled arginine-rich protein from its antiserum by arginine-rich protein and lipoproteins containing this protein, but not by rat albumin or other purified apolipoproteins. Immunoreactivity of rat serum and lipoproteins was complete as demonstrated by comparison with their delipidated form. The accuracy of the immunoassay was further substantiated by comparison with the amount of arginine-rich protein in chromatographic fractions of total apoprotein of very low and high density lipoproteins, and by recovery experiments in ultracentrifugally separated fractions of serum. In contrast to an immunoassay reported previously for rat apo A-I, sodium decyl sulfate was not required for complete immunoreactivity of serum and lipoproteins. The inclusion of sodium decyl sulfate (9 mM final concentration) was necessary, however, for stability of labeled and unlabeled preparations of arginine-rich protein. Content (weight %, means values +/- S.D.), of immunoassayable arginine-rich protein in isolated lipoproteins was 15 +/- 1.5% in very density lipoproteins; 6.8% in low density lipoproteins (1.02 less than d less than 1.04 g/m); 7.1 +/- 0.3% in high density lipoproteins; and 4.8 +/- 0.5% in lymph chylomicrons. Concentration in whole serum was 18.1 +/- 1.4 and 20.4 +/- 2.3 mg/dl for male and female rats, respectively. Only about 55% of arginine-rich protein was recovered in the major lipoprotein classes and about 40% was in "lipoprotein-free" serum (d greater than 1.25 g/ml). Among the lipoproteins, the high density lipoprotein fraction contained twice the amount of arginine-rich protein recovered in very low or low density lipoproteins (26.6 vs. 13.5 and 13.4%, respectively). The significance of the large amount of arginine-rich protein in the 1.25 g/ml infranatant fraction is not apparent. Although repetitive centrifugation did not alter the amount recovered in this fraction, the possibility of an artifact induced by centrifugation and high salt concentration cannot be excluded.

摘要

已开发出一种双抗体放射免疫分析法,用于定量十二烷基硫酸钠中的大鼠富含精氨酸载脂蛋白。通过氯胺 - T法用125I标记的富含精氨酸蛋白,在Sephadex G - 200上具有与未标记的富含精氨酸蛋白相同的色谱特征,并且高达70%的125I标记的富含精氨酸蛋白可被兔抗富含精氨酸蛋白的抗血清沉淀。该分析方法在1 - 10 ng水平敏感,批内和批间变异系数分别为5.4%和6.8%。该分析方法的特异性通过富含精氨酸蛋白和含有该蛋白的脂蛋白从其抗血清中竞争性取代125I标记的富含精氨酸蛋白来确定,但大鼠白蛋白或其他纯化的载脂蛋白则不能。通过与其脱脂形式比较证明大鼠血清和脂蛋白的免疫反应性是完全的。通过与极低密度和高密度脂蛋白总载脂蛋白色谱馏分中富含精氨酸蛋白的量进行比较,以及通过血清超速离心分离馏分中的回收实验,进一步证实了免疫分析的准确性。与先前报道的大鼠载脂蛋白A - I免疫分析方法不同,血清和脂蛋白的完全免疫反应性不需要十二烷基硫酸钠。然而,为了富含精氨酸蛋白标记和未标记制剂的稳定性,需要加入十二烷基硫酸钠(终浓度9 mM)。分离的脂蛋白中可免疫测定的富含精氨酸蛋白含量(重量%,平均值±标准差)在极低密度脂蛋白中为15±1.5%;在低密度脂蛋白中(1.02<d<1.04 g/ml)为6.8%;在高密度脂蛋白中为7.1±0.3%;在淋巴乳糜微粒中为4.8±0.5%。雄性和雌性大鼠全血清中的浓度分别为18.1±1.4和20.4±2.3 mg/dl。在主要脂蛋白类别中仅回收了约55%的富含精氨酸蛋白,约40%在“无脂蛋白”血清中(d>1.25 g/ml)。在脂蛋白中,高密度脂蛋白馏分中回收的富含精氨酸蛋白量是极低或低密度脂蛋白中的两倍(分别为26.6%对13.5%和13.4%)。在1.25 g/ml下层馏分中大量富含精氨酸蛋白的意义尚不清楚。尽管重复离心并未改变该馏分中回收的量,但不能排除由离心和高盐浓度引起的假象的可能性。

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