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相似文献

1
Purification and characterization of mouse interferon with novel affinity sorbents.用新型亲和吸附剂纯化及鉴定小鼠干扰素
J Virol. 1976 Feb;17(2):439-45. doi: 10.1128/JVI.17.2.439-445.1976.
2
Binding of human fibroblast interferon to concanavalin A-agarose. Involvement of carbohydrate recognition and hydrophobic interaction.人成纤维细胞干扰素与伴刀豆球蛋白A-琼脂糖的结合。碳水化合物识别和疏水相互作用的参与。
Biochemistry. 1976 Feb 10;15(3):704-13. doi: 10.1021/bi00648a039.
3
Hydrophobic interaction of human, mouse, and rabbit interferons with immobilized hydrocarbons.人、小鼠和兔干扰素与固定化碳氢化合物的疏水相互作用。
J Biol Chem. 1976 Dec 10;251(23):7620-5.
4
Binding of human interferons to immobolized Cibacron Blue F3GA: The nature of molecular interaction.人干扰素与固定化汽巴蓝F3GA的结合:分子相互作用的本质
Biochemistry. 1976 Nov 16;15(23):5182-7. doi: 10.1021/bi00668a036.
5
Hydrophobic binding sites on human interferon.人干扰素上的疏水结合位点。
J Biol Chem. 1975 Jan 10;250(1):348-9.
6
Purification of mouse interferon by sequential chromatography.通过连续色谱法纯化小鼠干扰素。
J Chromatogr. 1979 Apr 21;172:207-19. doi: 10.1016/s0021-9673(00)90956-7.
7
Physico-chemical characterization and partial purification of mouse immune interferon.小鼠免疫干扰素的物理化学特性及部分纯化
J Gen Virol. 1979 Sep;44(3):773-81. doi: 10.1099/0022-1317-44-3-773.
8
Affinity chromatography of primary human amnion interferon.原代人羊膜干扰素的亲和层析
Arch Virol. 1981;68(1):27-33. doi: 10.1007/BF01315164.
9
Physico-chemical characterization of hamster interferon.仓鼠干扰素的物理化学特性
Prep Biochem. 1979;9(4):339-58. doi: 10.1080/00327487908061699.
10
Antiproliferative activity of highly purified mouse interferon: brief communication.高纯度小鼠干扰素的抗增殖活性:简报
J Natl Cancer Inst. 1978 Jan;60(1):243-6. doi: 10.1093/jnci/60.1.243.

引用本文的文献

1
Inactivation of interferons: halomethyl ketone derivatives of phenylalanine as affinity labels.干扰素的失活:苯丙氨酸的卤代甲基酮衍生物作为亲和标记物。
Proc Natl Acad Sci U S A. 1982 Aug;79(16):4829-33. doi: 10.1073/pnas.79.16.4829.
2
Studies on Brucella interferon: chromatographic behaviour and purification.布鲁氏菌干扰素的研究:色谱行为与纯化
Arch Virol. 1980;63(1):57-68. doi: 10.1007/BF01320761.
3
Large-scale production and partial purification of mouse immune interferon.小鼠免疫干扰素的大规模生产与部分纯化
Infect Immun. 1979 Jan;23(1):80-6. doi: 10.1128/iai.23.1.80-86.1979.
4
Interferons: anti-neoplastic drugs?干扰素:抗肿瘤药物?
Blut. 1977 Sep 18;35(4):277-88. doi: 10.1007/BF00996140.
5
Production of interferon and serum hyporeactivity factor in mice infected with murine cytomegalovirus.感染鼠巨细胞病毒的小鼠中干扰素和血清低反应性因子的产生。
Infect Immun. 1978 Mar;19(3):903-7. doi: 10.1128/iai.19.3.903-907.1978.
6
Large-scale production and physicochemical characterization of human immune interferon.人免疫干扰素的大规模生产及理化特性分析
Infect Immun. 1979 Oct;26(1):36-41. doi: 10.1128/iai.26.1.36-41.1979.
7
Differences in mouse interferons according to cell source and mode of induction.根据细胞来源和诱导方式的小鼠干扰素差异。
Infect Immun. 1977 Sep;17(3):572-9. doi: 10.1128/iai.17.3.572-579.1977.

本文引用的文献

1
Differential production of interferon and refractoriness inducing principle in L cells.L 细胞中干扰素的差异产生和抗诱导原理。
Infect Immun. 1974 Nov;10(5):1057-61. doi: 10.1128/iai.10.5.1057-1061.1974.
2
Electrophoretic characterization of purified mouse L cell interferon of high specific activity.高比活性纯化小鼠L细胞干扰素的电泳特性分析
J Gen Virol. 1974 Apr;23(1):23-32. doi: 10.1099/0022-1317-23-1-23.
3
Fluorometric assay of proteins in the nanogram range.纳克级蛋白质的荧光测定法。
Arch Biochem Biophys. 1973 Mar;155(1):213-20. doi: 10.1016/s0003-9861(73)80023-2.
4
Purification of mouse interferon by affinity chromatography on anti-interferon globulin-sepharose.通过抗干扰素球蛋白-琼脂糖亲和层析法纯化小鼠干扰素。
J Immunol. 1973 Oct;111(4):1206-18.
5
Hydrophobic affinity chromatography of proteins.蛋白质的疏水亲和层析
Anal Biochem. 1973 Apr;52(2):430-48. doi: 10.1016/0003-2697(73)90046-8.
6
Distinct molecular species of interferons.干扰素的不同分子种类。
Virology. 1974 Sep;61(1):80-6. doi: 10.1016/0042-6822(74)90243-8.
7
Selective binding of human interferon to albumin immoblized on agarose.人干扰素与固定在琼脂糖上的白蛋白的选择性结合。
J Biol Chem. 1974 Jul 25;249(14):4665-7.
8
Purification of mouse interferon by affinity chromatography on a solid-phase immunoadsorbent.通过在固相免疫吸附剂上进行亲和层析法纯化小鼠干扰素。
Proc Natl Acad Sci U S A. 1973 Apr;70(4):1037-40. doi: 10.1073/pnas.70.4.1037.
9
An alpha-D-galactosyl-binding lectin from Bandeiraea simplicifolia seeds. Isolation by affinity chromatography and characterization.一种来自单叶豆种子的α-D-半乳糖基结合凝集素。通过亲和层析法进行分离及特性鉴定。
J Biol Chem. 1974 Mar 25;249(6):1904-14.
10
Heterogeneity of purified mouse interferons.纯化小鼠干扰素的异质性。
J Biol Chem. 1975 Jun 10;250(11):4139-44.

用新型亲和吸附剂纯化及鉴定小鼠干扰素

Purification and characterization of mouse interferon with novel affinity sorbents.

作者信息

Davey M W, Sulkowski E, Carter W A

出版信息

J Virol. 1976 Feb;17(2):439-45. doi: 10.1128/JVI.17.2.439-445.1976.

DOI:10.1128/JVI.17.2.439-445.1976
PMID:3666
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC515435/
Abstract

Several novel selective sorbents for mouse interferon are described that exploit the hydrophobic property and glycoprotein nature of this molecule. Low-molecular-weight ligands (hydrocarbons) and high-molecular-weight ligands (bovine serum albumin) immobilized on agarose bind selectively mouse L-cell interferon. The high selectivity of binding is due primarily to a hydrophobic effect, although electrostatic forces are also apparently involved. Mouse L-cell interferon binds to immobilized serum albumin and can be completely recovered by raising the ionic strength of the eluant. The specific activity of interferon preparations can be increased 2,000-fold to a value of 3 x 10(8) reference units per mg of protein in a single step with full recovery of the antiviral activity. A selective adsorption, although to a lesser degree, can be also obtained on hydrocarbon-coated agarose (Affi-Gel 202), resulting in 300-fold purification on desorption. The existence of two major components of mouse interferon was revealed upon its chromatography on the following sorbents: (i) bovine serum albumin-agarose, (ii) omega-carboxypentyl-agarose; and (iii) Bandeiraea simplicifolia lectin-agarose. This report thus provides for the first time a means for efficient and clear-cut separation of interferon components, thus enabling their further characterization.

摘要

本文描述了几种用于小鼠干扰素的新型选择性吸附剂,它们利用了该分子的疏水特性和糖蛋白性质。固定在琼脂糖上的低分子量配体(碳氢化合物)和高分子量配体(牛血清白蛋白)可选择性结合小鼠L细胞干扰素。结合的高选择性主要归因于疏水作用,不过静电作用力显然也有参与。小鼠L细胞干扰素与固定化血清白蛋白结合,通过提高洗脱液的离子强度可将其完全回收。干扰素制剂的比活性在一步操作中可提高2000倍,达到每毫克蛋白质3×10⁸参考单位,同时抗病毒活性可完全恢复。在碳氢化合物包被的琼脂糖(Affi - Gel 202)上也能实现选择性吸附,不过程度较小,解吸时可实现300倍的纯化。在以下吸附剂上对小鼠干扰素进行色谱分析时,发现了其两种主要成分:(i)牛血清白蛋白 - 琼脂糖,(ii)ω - 羧基戊基 - 琼脂糖;以及(iii)单叶豆凝集素 - 琼脂糖。因此,本报告首次提供了一种有效且明确分离干扰素成分的方法,从而能够对其进行进一步表征。