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Naturally crystalline hemoglobin of the nematode Mermis nigrescens. An in situ microspectrophotometric study of chemical properties and dichroism.线虫黑褐索线虫的天然结晶血红蛋白。化学性质和二色性的原位显微分光光度研究。
Biophys J. 1985 Apr;47(4):527-36. doi: 10.1016/S0006-3495(85)83947-3.
2
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本文引用的文献

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Haemoglobin of Gastrophilus larvae. Purification and properties.胃蝇幼虫的血红蛋白。纯化及特性
Biochem J. 1946;40(5-6):855-66. doi: 10.1042/bj0400855.
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HEMOGLOBINS OF PARASITIC ANIMALS.
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HAEMOGLOBIN IN THE 'CHROMOTROPE' OF AN INSECT PARASITIC NEMATODE.
Nature. 1964 May 9;202:615-6. doi: 10.1038/202615a0.
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Rational approaches to chemotherapy: antisickling agents.
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The hemoglobin of Ascaris body walls.蛔虫体壁的血红蛋白。
Biochim Biophys Acta. 1967 Jun 27;140(2):258-65. doi: 10.1016/0005-2795(67)90466-7.
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A contribution to the light sensitivity of the "chromatrope" of Mermis subnigrescens.
J Helminthol. 1966;40(1):33-8. doi: 10.1017/s0022149x00034052.
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The hemoglobin of Ascaris perienteric fluid. 3. Equilibria with oxygen and carbon monoxide.蛔虫肠周液中的血红蛋白。3. 与氧气和一氧化碳的平衡
Biochim Biophys Acta. 1965 Dec 16;111(2):503-11. doi: 10.1016/0304-4165(65)90060-7.
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The hemoglobin of Ascaris perienteric fluid. I. Purification and spectra.
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Single-crystal spectra of ferrimyoglobin complexes in polarized light.
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The reaction of ferrous ascaris perienteric fluid hemoglobin with hydrogen peroxide.
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线虫黑褐索线虫的天然结晶血红蛋白。化学性质和二色性的原位显微分光光度研究。

Naturally crystalline hemoglobin of the nematode Mermis nigrescens. An in situ microspectrophotometric study of chemical properties and dichroism.

作者信息

Burr A H, Harosi F I

出版信息

Biophys J. 1985 Apr;47(4):527-36. doi: 10.1016/S0006-3495(85)83947-3.

DOI:10.1016/S0006-3495(85)83947-3
PMID:3986282
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1435123/
Abstract

A dichroic microspectrophotometer was used to measure isotropic and dichroic absorbance spectra of this unique cytoplasmic hemoglobin and its derivatives. A perfusion slide enabled changing the media bathing the Mermis head. The native spectrum, which has an exceptionally low alpha-band extinction, was shown to be entirely due to oxyhemoglobin. The CO-hemoglobin spectrum is more typical, however, the alpha- and beta-bands are unusually closely spaced. A ferric hemochrome was formed on oxidation with ferricyanide or hydroxylamine and was readily converted to ferric hemoglobin cyanide on adding cyanide. Aquoferric hemoglobin and ferric hemoglobin fluoride were not easily formed. Deoxyhemoglobin, identified by its typical absorption spectrum, was formed only under the extremely low O2 pressures attainable in the presence of dithionite. A glucose oxidase, catalase solution deoxygenated hemoglobin in human erythrocytes but not in adjacent Mermis preparations. The affinity for O2 is much greater than for CO. Also, spectral evidence points to an oxyheme environment that is different than in vertebrate hemoglobin and myoglobin. The polarization ratio (PR) magnitude and the PR spectrum were unaffected by perfusion with high refractive index solvents; therefore, form dichroism due to the rodlike crystals is negligible. Maximum extinction is approximately perpendicular to the long axis of the microscopic crystals, which are oriented parallel to the body axis within the hypodermal cells. The PR spectra of the hemoglobin derivatives strongly resemble the corresponding spectra previously reported of single crystals made of horse hemoglobin, whale myoglobin, or Aplysia myoglobin and change appropriately when the ligand is changed. This confirms that the intracellular crystals of Mermis are of oxyhemoglobin.

摘要

使用二向色性显微分光光度计测量这种独特的细胞质血红蛋白及其衍生物的各向同性和二向色性吸收光谱。灌注载玻片能够改变包围麦地那龙线虫头部的介质。具有极低α带消光的天然光谱显示完全归因于氧合血红蛋白。一氧化碳血红蛋白光谱更典型,然而,α带和β带的间距异常紧密。用铁氰化物或羟胺氧化形成高铁血红素,加入氰化物后很容易转化为高铁血红蛋白氰化物。不易形成水合高铁血红蛋白和高铁血红蛋白氟化物。通过其典型吸收光谱鉴定的脱氧血红蛋白仅在连二亚硫酸盐存在下可达到的极低氧压下形成。葡萄糖氧化酶 - 过氧化氢酶溶液使人类红细胞中的血红蛋白脱氧,但不会使相邻的麦地那龙线虫制剂中的血红蛋白脱氧。对氧气的亲和力远大于对一氧化碳的亲和力。此外,光谱证据表明氧合血红素环境与脊椎动物血红蛋白和肌红蛋白中的不同。偏振比(PR)大小和PR光谱不受高折射率溶剂灌注的影响;因此,由于棒状晶体引起的形态二向色性可以忽略不计。最大消光大致垂直于微观晶体的长轴,这些晶体在皮下细胞内平行于身体轴排列。血红蛋白衍生物的PR光谱与先前报道的由马血红蛋白、鲸肌红蛋白或海兔肌红蛋白制成的单晶的相应光谱非常相似,并且当配体改变时会相应地改变。这证实了麦地那龙线虫的细胞内晶体是氧合血红蛋白。