Dräger U C, Edwards D L, Kleinschmidt J
Proc Natl Acad Sci U S A. 1983 Oct;80(20):6408-12. doi: 10.1073/pnas.80.20.6408.
An antiserum to alpha-melanocyte-stimulating hormone (alpha-MSH) was found to contain antibodies to at least two types of determinants on the alpha-MSH peptide: one is present only on the free peptide, the other is shared with neurofilaments. Immunoblots from mouse brain showed the neurofilament crossreactivity to be located on proteins in the Mr 140,000 range. The neurofilament-crossreactive portion of the antiserum could be selectively absorbed out with a cytoskeletal preparation, which abolished all affinity of the antiserum to the retina but did not affect the labeling pattern in the pituitary. Absorptions with desacetyl-alpha-MSH and corticotropin seemed to indicate that the determinant shared with neurofilaments is not located at either end of the alpha-MSH peptide, but somewhere in between. The immunohistochemical labeling of the retina with the alpha-MSH antiserum was compared to the labeling with monoclonal antibodies against Mr 200,000 neurofilaments. In the adult retina the alpha-MSH-like immunoreactivity was found to be slightly more widespread; most consistently it was detectable in cell bodies of large ganglion cells, whereas the heavy neurofilament subunit was absent from somata and proximal axons of these cells. In the developing mouse brain, expression of the heavy subunit was found to lag 2-3 wk behind expression of the Mr 140,000 proteins. This confirms previous reports of a more restricted distribution and late expression of high molecular weight neurofilaments as compared to the lower subunits.
发现一种针对α-黑素细胞刺激素(α-MSH)的抗血清含有针对α-MSH肽上至少两种类型决定簇的抗体:一种仅存在于游离肽上,另一种与神经丝共有。来自小鼠脑的免疫印迹显示神经丝交叉反应性位于分子量在140,000范围内的蛋白质上。抗血清中与神经丝交叉反应的部分可以用细胞骨架制剂选择性地吸收掉,这消除了抗血清对视网膜的所有亲和力,但不影响垂体中的标记模式。用去乙酰-α-MSH和促肾上腺皮质激素进行吸收似乎表明,与神经丝共有的决定簇不在α-MSH肽的两端,而是在两者之间的某个位置。将α-MSH抗血清对视网膜的免疫组织化学标记与针对分子量200,000神经丝的单克隆抗体的标记进行了比较。在成年视网膜中,发现α-MSH样免疫反应性分布稍广;最一致的是在大型神经节细胞的细胞体中可检测到,而这些细胞的胞体和近端轴突中没有重神经丝亚基。在发育中的小鼠脑中,发现重亚基的表达比分子量140,000蛋白质的表达滞后2 - 3周。这证实了先前的报道,即与较低亚基相比,高分子量神经丝的分布更受限且表达较晚。