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免疫球蛋白M结构动力学的一些特性。

Some peculiarities of the dynamics of the immunoglobulin M structure.

作者信息

Lapuk V A, Timofeev V P, Tchukchrova A I, Khatiashvili N M, Kiseleva T M

机构信息

N.D. Zelinsky Institute of Organic Chemistry, Academy of Sciences, Moscow, USSR.

出版信息

J Biomol Struct Dyn. 1984 Aug;2(1):63-76. doi: 10.1080/07391102.1984.10507547.

Abstract

The isotropic mobility of separate regions of the intact molecule of immunoglobulin M (IgM) and its Fab and (Fc)5 fragments was studied using spin-labeling of carbohydrate (2,2,6,6-tetramethyl-4-aminopiperidine-1-oxyl) and peptide (2,2,5,5-tetramethyl-3-dichlorotriazinylaminopyrrolidine-1-oxyl) moieties. The spin-labeled oligosaccharide groups (OGs) in the Fab region are shown to have much more amplitude of anisotropic motion than those in the (Fc)5 region. The spin label in the latter is evidently attached in the C mu 3 domain to one of its OGs which is probably stabilized by ionic contacts between terminal N-acetylneuraminic acid residue and the peptide moiety of the IgM molecule. When the amount of the glycosidase-cleaved carbohydrate does not exceed 10-15%, most OGs affected are of the Fab region. Upon profound splitting (greater than or equal to 50%) the OGs of the (Fc)5 region are also affected; that results evidently in loosening the ionic contacts between the shortened OGs and the peptide moiety of IgM, and consequently in increasing mobility of the former. The structure of the (Fc)5 region of IgM is labile; after detaching this moiety from the intact IgM molecule, its structure is stabilized, but one of its domains (C mu 3) becomes more mobile than it is in the intact IgM molecule; at the same time the amplitude of anisotropic motion of OG bound here is decreased. In the latter case, this decrease depends on the sequence of spin-labeling and fragmentation. The most probable cause of stabilization of the (Fc)5 fragment is the heating of IgM solution to 56 degree C during fragmentation with trypsin. At this temperature the tau value for the (Fc)5 fragment is unusually low, equaling 23 ns. The spin-labeling in the peptide part of IgM occurs mostly in the Fab region which is a rather rigid moiety as expected.

摘要

利用碳水化合物(2,2,6,6 - 四甲基 - 4 - 氨基哌啶 - 1 - 氧基)和肽(2,2,5,5 - 四甲基 - 3 - 二氯三嗪基氨基吡咯烷 - 1 - 氧基)部分的自旋标记,研究了完整免疫球蛋白M(IgM)分子及其Fab和(Fc)5片段各区域的各向同性流动性。结果表明,Fab区域中自旋标记的寡糖基团(OGs)的各向异性运动幅度比(Fc)5区域中的大得多。后者中的自旋标记显然连接在Cμ3结构域的一个OG上,该OG可能通过末端N - 乙酰神经氨酸残基与IgM分子肽部分之间的离子接触而稳定。当糖苷酶切割的碳水化合物量不超过10 - 15%时,受影响的大多数OGs位于Fab区域。当深度裂解(大于或等于50%)时,(Fc)5区域的OGs也会受到影响;这显然导致缩短的OGs与IgM肽部分之间的离子接触松弛,从而使前者的流动性增加。IgM的(Fc)5区域结构不稳定;将该部分从完整的IgM分子上分离后,其结构稳定,但其中一个结构域(Cμ3)变得比在完整IgM分子中更具流动性;同时,结合在此处的OG的各向异性运动幅度减小。在后一种情况下,这种减小取决于自旋标记和片段化的顺序。(Fc)5片段稳定的最可能原因是在用胰蛋白酶片段化期间将IgM溶液加热至56℃。在此温度下,(Fc)5片段的弛豫时间(tau值)异常低,等于23纳秒。IgM肽部分的自旋标记主要发生在Fab区域,正如预期的那样,Fab区域是一个相当刚性的部分。

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