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低等脊椎动物大脑突触连接部分的分离、形态学以及蛋白质和糖蛋白组成:抗原PSD-95作为连接标记物

Isolation, morphology, and protein and glycoprotein composition of synaptic junctional fractions from the brain of lower vertebrates: antigen PSD-95 as a junctional marker.

作者信息

Nieto-Sampedro M, Bussineau C M, Cotman C W

出版信息

J Neurosci. 1982 Jun;2(6):722-34. doi: 10.1523/JNEUROSCI.02-06-00722.1982.

Abstract

Synaptic junction (SJ) fractions were isolated from the brains of the gray shark, bonito, common frog, several reptiles, and common chicken and compared to those prepared from mammalian brain. All SJ preparations, as judged by electron microscopic analysis, were at least 85% pure, consisting primarily of postsynaptic densities (PSDs) with or without an overlying plasma membrane and, to a lesser extent, of complete synaptic junctions. Complete junctions were less abundant in preparations from lower vertebrates. The electrophoretic pattern of SJs from different vertebrate species showed considerable conservation of the major protein bands. The most abundant were fibrous proteins, especially tubulins, actin, and the PSD-specific polypeptide with a molecular weight of 52,000 (PSD-52). Glycoproteins capable of binding concanavalin A were present in SJs from all vertebrates; their apparent molecular weight and relative abundance were characteristic of each animal order examined, showing more similarities in species more closely related phylogenetically. Finally, a protein (antigen PSD-95) previously shown to be located specifically in the postsynaptic densities of the mammalian brain was present in all species. The binding of antibody specific to this protein decreased with descending phylogenetic order from mammals to shark. Nonetheless, PSD-95 was present in all vertebrate species and appeared to be a general specific marker for PSDs.

摘要

从灰鲨、鲣鱼、普通青蛙、几种爬行动物和普通鸡的大脑中分离出突触连接(SJ)组分,并与从哺乳动物大脑中制备的组分进行比较。通过电子显微镜分析判断,所有SJ制剂的纯度至少为85%,主要由带有或不带有上层质膜的突触后致密物(PSD)组成,在较小程度上还包括完整的突触连接。在低等脊椎动物的制剂中,完整连接的数量较少。来自不同脊椎动物物种的SJ的电泳图谱显示主要蛋白带具有相当程度的保守性。最丰富的是纤维蛋白,尤其是微管蛋白、肌动蛋白和分子量为52,000的PSD特异性多肽(PSD-52)。能够结合伴刀豆球蛋白A的糖蛋白存在于所有脊椎动物的SJ中;它们的表观分子量和相对丰度是所检查的每个动物类目的特征,在系统发育上关系更密切的物种中显示出更多相似性。最后,一种先前被证明特异性位于哺乳动物大脑突触后致密物中的蛋白质(抗原PSD-95)存在于所有物种中。针对这种蛋白质的特异性抗体的结合随着从哺乳动物到鲨鱼的系统发育顺序下降而降低。尽管如此,PSD-95存在于所有脊椎动物物种中,似乎是PSD的一种通用特异性标记物。

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