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在枪乌贼(Loligo pealei)神经系统发育过程中神经丝蛋白的表达

Expression of neurofilament proteins during development of the nervous system in the squid Loligo pealei.

作者信息

Grant P, Tseng D, Gould R M, Gainer H, Pant H C

机构信息

Laboratory of Neurochemistry, National Institute of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, Maryland 20892, USA.

出版信息

J Comp Neurol. 1995 May 29;356(2):311-26. doi: 10.1002/cne.903560212.

Abstract

The squid nervous system includes various brain ganglia, optic lobes (the visual center), and the stellate ganglia, the system of giant motor fibers responsible for rapid jet-propelled escape behavior. The large caliber of giant fibers is due, in part, to the accumulation of squid-specific neurofilaments (NFs) made up of a heavily phosphorylated NF 220 protein together with NF 70 and NF 60 subunits. Using antibodies prepared against known peptide sequences in these proteins, together with a mammalian-derived antibody that specifically recognizes phosphorylated squid NF 220, we studied the localization of NFs in adult tissues and during neural development. Immunoblot and immunohistochemical analyses showed that NFs were present in adult neural tissues, primarily in selected fibers, with giant axons showing the most robust expression. After the first neurons differentiated at stage 22, immunoblots showed NF 60- and NF 70-immunoreactive proteins at all stages. The NF 220 subunit, however, was not detected in immunoblots at any developmental stage. Phosphorylated NF 220 immunoreactivity, although absent in immunoblots, was first seen in selected fibers of the stellate ganglia at stage 25, increasing thereafter in all giant fibers until hatching (stage 30). The stellate ganglion is the first neural tissue to acquire a mature neurofilament complement (i.e., phosphorylated NF 220), shortly before the onset of jet-propelled escape behavior. The temporal pattern of expression of the NFs during development resembled that seen in vertebrates; i.e., the smaller NFs appeared before the larger subunit in most neural tissues. In the squid, the expression pattern seems to depend upon the post-transcriptional regulation of a single gene rather than upon transcriptional regulation of three independent genes as in vertebrates.

摘要

鱿鱼的神经系统包括各种脑神经节、视叶(视觉中心)和星状神经节,其中巨大运动纤维系统负责快速的喷气式逃逸行为。巨大纤维的大口径部分归因于由高度磷酸化的NF 220蛋白以及NF 70和NF 60亚基组成的鱿鱼特异性神经丝(NFs)的积累。我们使用针对这些蛋白质中已知肽序列制备的抗体,以及一种特异性识别磷酸化鱿鱼NF 220的哺乳动物来源抗体,研究了NFs在成年组织和神经发育过程中的定位。免疫印迹和免疫组织化学分析表明,NFs存在于成年神经组织中,主要存在于选定的纤维中,巨大轴突显示出最强的表达。在第22阶段第一批神经元分化后,免疫印迹显示在所有阶段都有NF 60和NF 70免疫反应性蛋白。然而,在任何发育阶段的免疫印迹中都未检测到NF 220亚基。磷酸化的NF 220免疫反应性虽然在免疫印迹中不存在,但在第25阶段首次出现在星状神经节的选定纤维中,此后在所有巨大纤维中增加,直至孵化(第30阶段)。星状神经节是第一个获得成熟神经丝补体(即磷酸化NF 220)的神经组织,就在喷气式逃逸行为开始前不久。NFs在发育过程中的表达时间模式与在脊椎动物中观察到的相似;即,在大多数神经组织中,较小的NFs比较大的亚基出现得早。在鱿鱼中,表达模式似乎取决于单个基因的转录后调控,而不是像在脊椎动物中那样取决于三个独立基因的转录调控。

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