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1
Effect of the binding of bilirubin to either the first class or the second class of binding sites of the human serum albumin molecule on its photochemical reaction.胆红素与人血清白蛋白分子的第一类或第二类结合位点结合对其光化学反应的影响。
Biochem J. 1989 Feb 1;257(3):711-4. doi: 10.1042/bj2570711.
2
Wavelength-dependence of the relative rate constants for the main geometric and structural photoisomerization of bilirubin IX alpha bound to human serum albumin. Demonstration of green light at 510 nm as the most effective wavelength in photochemical changes from (ZZ)-bilirubin IX alpha to (EZ)-cyclobilirubin IX alpha via (EZ)-bilirubin.与人类血清白蛋白结合的胆红素IXα主要几何和结构光异构化的相对速率常数的波长依赖性。证明510nm的绿光作为通过(EZ)-胆红素将(ZZ)-胆红素IXα光化学转变为(EZ)-环胆红素IXα的最有效波长。
Biochem J. 1986 May 15;236(1):23-9. doi: 10.1042/bj2360023.
3
Kinetic study of the photochemical changes of (ZZ)-bilirubin IX alpha bound to human serum albumin. Demonstration of (EZ)-bilirubin IX alpha as an intermediate in photochemical changes from (ZZ)-bilirubin IX alpha to (EZ)-cyclobilirubin IX alpha.与人类血清白蛋白结合的(ZZ)-胆红素IXα光化学变化的动力学研究。证明(EZ)-胆红素IXα是(ZZ)-胆红素IXα向(EZ)-环胆红素IXα光化学变化过程中的中间体。
Biochem J. 1985 Feb 15;226(1):251-8. doi: 10.1042/bj2260251.
4
Wavelength dependence of the geometric and structural photoisomerization of bilirubin bound to human serum albumin.与人类血清白蛋白结合的胆红素的几何和结构光异构化的波长依赖性。
Biol Neonate. 1987;51(1):10-7. doi: 10.1159/000242625.
5
Comparison of kinetic study of the photochemical changes of (ZZ)-bilirubin IX alpha bound to human serum albumin with that bound to rat serum albumin.与结合大鼠血清白蛋白的(ZZ)-胆红素IXα的光化学变化动力学研究的比较,该(ZZ)-胆红素IXα与人血清白蛋白结合。
Biochem J. 1985 Sep 15;230(3):561-7. doi: 10.1042/bj2300561.
6
(EZ)-Cyclobilirubin formation from bilirubin in complex with serum albumin derived from various species.(EZ)-胆红素与来源于不同物种的血清白蛋白结合后形成胆绿素。
J Photochem Photobiol B. 2010 Feb 12;98(2):138-43. doi: 10.1016/j.jphotobiol.2009.11.012. Epub 2009 Dec 2.
7
Bilirubin photoisomers in rhesus monkey serum.恒河猴血清中的胆红素光异构体。
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8
Binding of bilirubin to low-affinity sites of human serum albumin in vitro followed by co-crystallization.体外结合胆红素与人血清白蛋白的低亲和力部位,随后进行共结晶。
Scand J Clin Lab Invest. 1972;29(4):433-46. doi: 10.3109/00365517209080263.
9
Ceftriaxone binding to human serum albumin: competition with bilirubin.头孢曲松与人血清白蛋白的结合:与胆红素的竞争。
Mol Pharmacol. 1989 Sep;36(3):478-83.
10
Fluorescent dye method for determination of the bilirubin-binding capacity of serum albumin.荧光染料法测定血清白蛋白的胆红素结合能力。
J Pediatr. 1975 Feb;86(2):280-5. doi: 10.1016/s0022-3476(75)80489-6.

本文引用的文献

1
Enterohepatic circulation of bilirubin.胆红素的肠肝循环。
Nature. 1961 Oct 28;192:372. doi: 10.1038/192372a0.
2
Enterohepatic circulation of unconjugated bilirubin in man.
Nature. 1962 Oct 13;196:141-2. doi: 10.1038/196141a0.
3
Binding of bilirubin to human serum albumin - determination of the dissociation constants.胆红素与人血清白蛋白的结合——解离常数的测定
FEBS Lett. 1969 Oct 21;5(2):112-114. doi: 10.1016/0014-5793(69)80307-8.
4
Demonstration of a geometric isomer of bilirubin-IX alpha in the serum of a hyperbilirubinaemic newborn infant and the mechanism of jaundice phototherapy.一名高胆红素血症新生儿血清中胆红素-IXα几何异构体的证实及黄疸光疗机制
Biochem J. 1980 Sep 15;190(3):533-6. doi: 10.1042/bj1900533.
5
Kinetics of biliary excretion of the main two bilirubin photoproducts after injection into Gunn rats.注射到冈恩大鼠体内后两种主要胆红素光产物的胆汁排泄动力学。
Biochem J. 1981 Jul 15;198(1):107-12. doi: 10.1042/bj1980107.
6
Nucleotide sequence of cloned rat serum albumin messenger RNA.克隆的大鼠血清白蛋白信使核糖核酸的核苷酸序列。
Proc Natl Acad Sci U S A. 1981 Jan;78(1):243-6. doi: 10.1073/pnas.78.1.243.
7
Binding of bilirubin to albumin.胆红素与白蛋白的结合。
CRC Crit Rev Clin Lab Sci. 1980 Jan;11(4):305-99.
8
Excretion of administered and endogenous photobilirubins in the bile of the jaundice gunn rat.黄疸Gunn大鼠胆汁中注入的和内源性光胆红素的排泄情况。
J Clin Invest. 1981 Jul;68(1):134-41. doi: 10.1172/jci110229.
9
Albumin-bilirubin binding mechanism.白蛋白-胆红素结合机制。
J Biol Chem. 1983 May 25;258(10):6319-26.
10
Spectral study of the photochemistry of dipyrrole models for bilirubin bound to human serum albumin.与人类血清白蛋白结合的胆红素二吡咯模型的光化学光谱研究。
Photochem Photobiol. 1983 Mar;37(3):263-70. doi: 10.1111/j.1751-1097.1983.tb04471.x.

胆红素与人血清白蛋白分子的第一类或第二类结合位点结合对其光化学反应的影响。

Effect of the binding of bilirubin to either the first class or the second class of binding sites of the human serum albumin molecule on its photochemical reaction.

作者信息

Onishi S, Itoh S, Isobe K, Ochi M, Kunikata T, Imai T

机构信息

Department of Pediatrics, Kagawa Medical School, Japan.

出版信息

Biochem J. 1989 Feb 1;257(3):711-4. doi: 10.1042/bj2570711.

DOI:10.1042/bj2570711
PMID:2930481
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1135646/
Abstract

The kinetics of the photochemical changes of bilirubin were studied at a constant concentration of bilirubin bound either to the first class or to the second class of binding sites of the human serum albumin molecule. The more the bilirubin binds to the first class of binding sites in the human serum albumin molecule, the more readily geometric photoequilibrium to give (ZE)-bilirubin takes place. The more the bilirubin binds to the second class of binding sites or allosterically transformed binding sites induced by added SDS, the more readily structural photoisomerization, i.e. the formation of (EZ)-cyclobilirubin, takes place. When the serum bilirubin concentration is at low, safe, values bilirubin binds exclusively to the first class of binding sites and serves as an antioxidant [Onishi, Yamakawa & Ogawa (1971) Perinatology 1, 373-379]; at these concentrations human serum albumin protects bilirubin from irreversible photodegradation by only allowing readily reversible geometric photoisomerization. As the serum bilirubin concentration increases to high, and potentially dangerous, values, bilirubin binds to the second class of binding sites, and under these conditions human serum albumin seems to promote the photocyclization of bilirubin. During irradiation human serum albumin seems to act by retaining low, useful, concentrations of bilirubin while facilitating irreversible photoisomerization of excess bilirubin.

摘要

在胆红素与人血清白蛋白分子的第一类或第二类结合位点结合浓度恒定的情况下,研究了胆红素的光化学变化动力学。胆红素与人血清白蛋白分子中第一类结合位点结合得越多,形成(ZE)-胆红素的几何光平衡就越容易发生。胆红素与第二类结合位点或由添加的十二烷基硫酸钠诱导的变构转化结合位点结合得越多,结构光异构化,即(EZ)-环胆红素的形成就越容易发生。当血清胆红素浓度处于低的、安全的值时,胆红素仅与第一类结合位点结合并作为抗氧化剂[大西、山川和小川(1971年)《围产医学》1,373 - 379];在这些浓度下,人血清白蛋白仅通过允许易于可逆的几何光异构化来保护胆红素免受不可逆的光降解。随着血清胆红素浓度升高到高的、潜在危险的值,胆红素与第二类结合位点结合,在这些条件下人血清白蛋白似乎促进胆红素的光环化。在照射过程中,人血清白蛋白似乎通过保持低的、有用的胆红素浓度,同时促进过量胆红素的不可逆光异构化来发挥作用。