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猫胼胝体中神经丝重链亚基的发育变化。

Developmental changes in the heavy subunit of neurofilaments in the corpus callosum of the cat.

作者信息

Guadano-Ferraz A, Riederer B M, Innocenti G M

机构信息

Institute of Anatomy, University of Lausanne, Switzerland.

出版信息

Brain Res Dev Brain Res. 1990 Nov 1;56(2):244-56. doi: 10.1016/0165-3806(90)90089-h.

Abstract

In the corpus callosum of the cat, the heavy subunit of neurofilaments (NFH) can be demonstrated with the monoclonal antibody NE14, as early as P11, not at P3, and only in a few axons. At P18-19 and more markedly at P29, many more callosal axons have become positive to NE14 and this is similar to what is found in the adult. In contrast, callosal axons become positive to the neurofilament antibody SMI-32 only between P29 and P39 and remain positive in the adult. Treatment with alkaline phosphatase prevents axonal staining with NE14, but results in SMI-32 staining of a few callosal axons as early as P11, but not at P3. Between P11 and P19 the number of axons stained with SMI-32 after alkaline phosphatase treatment increases, in parallel with that of axons stained with NE14. Thus NE14 appears to recognize a phosphorylated form of NFH, while SMI-32 appears to recognize an epitope of NFH which is either masked by phosphate or inaccessible until between P29 and P39, unless the tissue is treated with alkaline phosphatase. These two forms of NFH appear towards the end of the period of massive developmental elimination of callosal axons. They are also synchronous with changes in the spacing of neurofilaments quantified in a separate ultrastructural study. These cytoskeletal changes may terminate the juvenile-labile state of callosal axons and allow further axial growth of the axon.

摘要

在猫的胼胝体中,早在出生后第11天,神经丝重链(NFH)就能用单克隆抗体NE14显示出来,而在出生后第3天则不能,且仅在少数轴突中显示。在出生后第18 - 19天,尤其是在出生后第29天,更多的胼胝体轴突对NE14呈阳性反应,这与在成年猫中发现的情况相似。相比之下,胼胝体轴突直到出生后第29天至第39天之间才对神经丝抗体SMI - 32呈阳性反应,且在成年猫中仍保持阳性。用碱性磷酸酶处理可阻止NE14对轴突的染色,但早在出生后第11天就能使少数胼胝体轴突被SMI - 32染色,而在出生后第3天则不能。在出生后第11天至第19天之间,碱性磷酸酶处理后被SMI - 32染色的轴突数量增加,与被NE14染色的轴突数量增加同步。因此,NE14似乎识别的是NFH的磷酸化形式,而SMI - 32似乎识别的是NFH的一个表位,该表位要么被磷酸盐掩盖,要么在出生后第29天至第39天之间才变得可及,除非用碱性磷酸酶处理组织。这两种形式的NFH出现在胼胝体轴突大量发育性消除阶段的末期。它们也与另一项超微结构研究中量化的神经丝间距变化同步。这些细胞骨架变化可能会终止胼胝体轴突的幼年易变状态,并允许轴突进一步进行轴向生长。

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