Morris R
Dev Neurosci. 1985;7(3):133-60. doi: 10.1159/000112283.
Thy-1 is a developmentally regulated cell surface glycoprotein, found at high levels in nerve and certain other tissues. In brain its level rises nearly 100-fold during early postnatal development, but until recently the cellular basis of this, or even the distribution of Thy-1 in adult nervous tissue, has been unclear. On the other hand considerable progress has been made in elucidating the gene, and protein and carbohydrate structure of this molecule, so that the basis for its developmental regulation, and possibly its function, is beginning to emerge. In adult nervous tissues Thy-1 appears to be a surface component of most neurons, although within the CNS the density of antigen varies considerably on different cell types. Early in development, however, Thy-1 is present on only certain neurons--for instance on Purkinje cells in cerebellar cortex--and Thy-1 immunohistochemistry can demonstrate new aspects of the development of such cells. During development, previously Thy-1-negative cells can acquire high levels of Thy-1, and conversely detectable antigen can be lost from cells which at earlier stages stained intensely in Thy-1 immunohistochemistry. Such developmental changes can occur in waves of maturation which are defined spatially as well as temporally. Changing patterns of Thy-1 expression are also found at some sites in nervous tissue after axonal injury. The evidence for a role for Thy-1 in nervous system development is discussed, both in terms of its changing distribution during development and in the light of more direct attempts to define its role on the cell surface.
Thy-1是一种在发育过程中受到调控的细胞表面糖蛋白,在神经组织和某些其他组织中含量很高。在大脑中,其水平在出生后早期发育过程中会升高近100倍,但直到最近,其升高的细胞基础,甚至Thy-1在成体神经组织中的分布情况仍不清楚。另一方面,在阐明该分子的基因、蛋白质和碳水化合物结构方面已经取得了相当大的进展,因此其发育调控的基础以及可能的功能开始显现出来。在成体神经组织中,Thy-1似乎是大多数神经元的表面成分,尽管在中枢神经系统内,不同细胞类型上抗原的密度差异很大。然而,在发育早期,Thy-1仅存在于某些神经元上——例如小脑皮质的浦肯野细胞上——Thy-1免疫组织化学可以揭示此类细胞发育的新方面。在发育过程中,以前Thy-1阴性的细胞可以获得高水平的Thy-1,反之,在Thy-1免疫组织化学中早期染色强烈的细胞可能会失去可检测到的抗原。这种发育变化可以以在空间和时间上都有定义的成熟波的形式发生。在轴突损伤后的神经组织某些部位也发现了Thy-1表达模式的变化。本文将从其在发育过程中不断变化的分布以及根据更直接地确定其在细胞表面作用的尝试这两个方面来讨论Thy-1在神经系统发育中作用的证据。