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对来自神经丝三联体成分NFM和NFH的两种经蛋白水解产生的可溶性多肽的表征。

Characterization of two proteolytically derived soluble polypeptides from the neurofilament triplet components NFM and NFH.

作者信息

Chin T K, Harding S E, Eagles P A

机构信息

Department of Biophysics, King's College London, U.K.

出版信息

Biochem J. 1989 Nov 15;264(1):53-60. doi: 10.1042/bj2640053.

Abstract

We have purified to homogeneity the regions derived by chymotryptic digestion of the ox neurofilament polypeptides NFH and NFM; the regions, called M1 and M2, are thought to form part of the projecting sidearms of mammalian neurofilaments [Chin, Eagles & Maggs (1983) Biochem. J. 215, 239-252]. They were isolated and purified under non-denaturing conditions and showed no tendency to interact with each other in solution. The Mr values obtained by sedimentation are approx. 61,000 for M1 and 42,000 for M2, considerably lower than the values obtained by SDS/polyacrylamide-gel electrophoresis. These Mr values were unchanged in the presence of 6 M-guanidine hydrochloride, suggesting that the regions exist as monomers in solution. Both M1 and M2 are highly phosphorylated, and there is only a slight change in the sedimentation value upon dephosphorylation. Dephosphorylation of M1 with alkaline phosphatase was more than 90% efficient but was never absolute. Dephosphorylation of M2 was complete. Both M1 and M2 bind Ca2+; in the case of M1, this binding is phosphorylation-dependent. M1 also binds cytochrome c, and dephosphorylation affects binding. In similar conditions, neurofilaments bind at least twice their own mass of cytochrome c, owing to their opposite net charges. No interactions were observed between native or dephosphorylated M1 and M2, and intact neurofilaments under a wide variety of conditions. These results are discussed in terms of the possible roles that neurofilament sidearms might play and throw doubt upon their supposed function of rigidly cross-linking neurofilaments together within the axoplasm of neurons.

摘要

我们已将牛神经丝多肽NFH和NFM经胰凝乳蛋白酶消化后得到的区域纯化至同质状态;这些区域称为M1和M2,被认为是哺乳动物神经丝伸出侧臂的一部分[Chin、Eagles和Maggs(1983年)《生物化学杂志》215卷,239 - 252页]。它们在非变性条件下被分离和纯化,在溶液中彼此无相互作用的倾向。通过沉降获得的Mr值,M1约为61,000,M2约为42,000,远低于通过SDS/聚丙烯酰胺凝胶电泳获得的值。在6 M盐酸胍存在下,这些Mr值不变,表明这些区域在溶液中以单体形式存在。M1和M2都高度磷酸化,去磷酸化后沉降值仅有轻微变化。用碱性磷酸酶对M1去磷酸化的效率超过90%,但从未达到完全去磷酸化。M2的去磷酸化是完全的。M1和M2都能结合Ca2 +;就M1而言,这种结合依赖于磷酸化。M1还能结合细胞色素c,去磷酸化会影响结合。在类似条件下,神经丝由于其相反的净电荷能结合至少自身质量两倍的细胞色素c。在多种条件下,未观察到天然或去磷酸化的M1与M2以及完整神经丝之间有相互作用。本文根据神经丝侧臂可能发挥的作用对这些结果进行了讨论,并对其在神经元轴浆内将神经丝牢固交联在一起的假定功能提出了质疑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d2b/1133546/089c937c5d72/biochemj00195-0063-a.jpg

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