Leung C L, Liem R K
Department of Biochemistry, Columbia University College of Physicians and Surgeons, New York, New York 10032, USA.
J Biol Chem. 1996 Jun 14;271(24):14041-4.
In the adult axon, the neurofilaments (NFs) are heteropolymers formed from the low (NFL), middle (NFM), and high (NFH) molecular weight neurofilament triplet proteins (NFTPs). All three proteins have the basic intermediate filament protein tripartite structure, which consists of a short amino-terminal head region, an alpha-helical rod region of approximately310 amino acids, and a carboxyl-terminal tail region of variable length. In vitro polymerization studies have shown that only NFL can assemble into homopolymeric 10-nm filaments. The assembly of intermediate filaments, including the NFs, begins with the formation of a coiled-coil dimer involving the alpha-helical rod domains of two molecules. In order to determine whether homodimers or heterodimers of NFTPs are the preferred intermediates in the assembly of NFs, we have used the yeast two-hybrid system to study the interactions between the different NFTPs. By monitoring the activity of the lacZ reporter gene product, we are able to show that the interactions of NFL with NFL, NFM, or NFH are stronger than the interactions of NFM with NFM or NFH and the interaction of NFH with NFH. These results imply that NFM and NFH are more likely to form heterodimers with NFL than homodimers and are consistent with the inability of NFM and NFH to self-polymerize in vitro and in vivo.
在成年轴突中,神经丝(NFs)是由低分子量(NFL)、中分子量(NFM)和高分子量(NFH)神经丝三联体蛋白(NFTPs)形成的异源聚合物。所有这三种蛋白质都具有中间丝蛋白的基本三方结构,该结构由一个短的氨基末端头部区域、一个约310个氨基酸的α螺旋杆状区域以及一个长度可变的羧基末端尾部区域组成。体外聚合研究表明,只有NFL能够组装成10纳米的同聚丝。包括神经丝在内的中间丝的组装始于由两个分子的α螺旋杆状结构域形成的卷曲螺旋二聚体。为了确定NFTPs的同二聚体或异二聚体是否是神经丝组装中的首选中间体,我们使用酵母双杂交系统来研究不同NFTPs之间的相互作用。通过监测lacZ报告基因产物的活性,我们能够表明NFL与NFL、NFM或NFH之间的相互作用比NFM与NFM或NFH之间的相互作用以及NFH与NFH之间的相互作用更强。这些结果意味着NFM和NFH与NFL形成异二聚体的可能性大于同二聚体,并且与NFM和NFH在体外和体内不能自我聚合一致。