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使用类特异性多克隆抗体在cAMP激活的鞭毛中鉴定动力蛋白内臂重链

Dynein inner arm heavy chain identification in cAMP-activated flagella using class-specific polyclonal antibodies.

作者信息

Stephens R E, Prior G

机构信息

Department of Physiology, Boston University School of Medicine, Massachusetts 02118, USA.

出版信息

Cell Motil Cytoskeleton. 1995;30(4):261-71. doi: 10.1002/cm.970300404.

Abstract

While studying cAMP-dependent dynein alpha-heavy chain phosphorylation, we found previously [Stephens and Prior, 1992: J. Cell Sci. 103:999-1012] that high salt extraction of sperm flagella from the mussel Mytilus edulis or the clam Spisula solidissima removed most visible dynein arms, accompanied by an amount of Mg+2-ATPase that correlated with the mass of dynein alpha- and beta-heavy chains removed. However, although almost devoid of ATPase activity, such extracted axonemes retained one third of the heavy chain mass as two sets of electrophoretically-distinct, vanadate-cleavable, non-phosphorylated proteins. To explore the nature of these dynein-like proteins, antibodies to the alpha- and beta-heavy chains were blot affinity-purified from a rabbit antiserum raised against gradient-purified Spisula 18-20S flagellar outer arm dynein. Although able to recognize common epitopes of the opposite chain type, neither the alpha- nor the beta-heavy chain antibody recognized the tightly-bound proteins in either species, proving that they are immunologically distinct. While the beta-antibody recognized its heavy chain homolog in gill cilia, the alpha-antibody did not, demonstrating immunological distinction between flagellar and ciliary dynein alpha-heavy chains. Immunization of a mouse with nitrocellulose strips containing one of the two tightly-bound Spisula flagellar proteins produced an antiserum that cross-reacted with each tightly-bound protein in both species and also recognized alpha- and beta-heavy chains. The anti-molluscan serum cross-reacted strongly with sea urchin sperm flagellar dynein B-, C-, and D-bands, considered to be inner arm components, but not with sea urchin outer arm alpha- or beta-heavy chains. These data indicate that the electrophoretically and immunologically distinct, tightly-bound proteins of molluscan flagella are inner arm dynein heavy chains.

摘要

在研究环磷酸腺苷(cAMP)依赖性动力蛋白α重链磷酸化过程中,我们先前发现[斯蒂芬斯和普赖尔,1992年:《细胞科学杂志》103卷:999 - 1012页],用高盐溶液从贻贝紫贻贝或蛤蜊坚实偏顶蛤的精子鞭毛中提取时,去除了大部分可见的动力蛋白臂,同时去除的Mg +2 - ATP酶量与去除的动力蛋白α和β重链质量相关。然而,尽管这种提取的轴丝几乎没有ATP酶活性,但仍保留了三分之一的重链质量,表现为两组电泳性质不同、能被钒酸盐切割的非磷酸化蛋白质。为了探究这些类动力蛋白的性质,从针对梯度纯化的坚实偏顶蛤18 - 20S鞭毛外臂动力蛋白产生的兔抗血清中,通过印迹亲和纯化得到了针对α和β重链的抗体。尽管能够识别相反链类型的共同表位,但α和β重链抗体均未识别这两种物种中紧密结合的蛋白质,证明它们在免疫上是不同的。虽然β抗体识别鳃纤毛中的其重链同源物,但α抗体未识别,这表明鞭毛和纤毛动力蛋白α重链在免疫上存在差异。用含有两种紧密结合的坚实偏顶蛤鞭毛蛋白之一的硝酸纤维素条对小鼠进行免疫,产生了一种抗血清,该抗血清与这两种物种中的每种紧密结合蛋白都发生交叉反应,并且还识别α和β重链。这种抗软体动物血清与海胆精子鞭毛动力蛋白的B、C和D带强烈交叉反应,这些带被认为是内臂成分,但与海胆外臂α或β重链不发生交叉反应。这些数据表明,软体动物鞭毛中电泳和免疫性质不同的紧密结合蛋白质是内臂动力蛋白重链。

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