Dougherty Gerard W, Adler Henry J, Rzadzinska Agnieszka, Gimona Mario, Tomita York, Lattig M Claudia, Merritt Raymond C, Kachar Bechara
Section on Structural Cell Biology, NIDCD, NIH, Bethesda, Maryland 20892-8027, USA.
Cell Motil Cytoskeleton. 2005 Nov;62(3):141-56. doi: 10.1002/cm.20093.
Microtubules (MTs) are polymers of alpha and beta tubulin dimers that mediate many cellular functions, including the establishment and maintenance of cell shape. The dynamic properties of MTs may be influenced by tubulin isotype, posttranslational modifications of tubulin, and interaction with microtubule-associated proteins (MAPs). End-binding (EB) family proteins affect MT dynamics by stabilizing MTs, and are the only MAPs reported that bind MTs via a calponin-homology (CH) domain (J Biol Chem 278 (2003) 49721-49731; J Cell Biol 149 (2000) 761-766). Here, we describe a novel 27 kDa protein identified from an inner ear organ of Corti library. Structural homology modeling demonstrates a CH domain in this protein similar to EB proteins. Northern and Western blottings confirmed expression of this gene in other tissues, including brain, lung, and testis. In the organ of Corti, this protein localized throughout distinctively large and well-ordered MT bundles that support the elongated body of mechanically stiff pillar cells of the auditory sensory epithelium. When ectopically expressed in Cos-7 cells, this protein localized along cytoplasmic MTs, promoted MT bundling, and efficiently stabilized MTs against depolymerization in response to high concentration of nocodazole and cold temperature. We propose that this protein, designated CLAMP, is a novel MAP and represents a new member of the CH domain protein family.
微管(MTs)是由α和β微管蛋白二聚体组成的聚合物,介导许多细胞功能,包括细胞形状的建立和维持。微管的动态特性可能受微管蛋白亚型、微管蛋白的翻译后修饰以及与微管相关蛋白(MAPs)的相互作用影响。末端结合(EB)家族蛋白通过稳定微管来影响微管动态,并且是唯一报道的通过钙调蛋白同源(CH)结构域结合微管的MAPs(《生物化学杂志》278(2003)49721 - 49731;《细胞生物学杂志》149(2000)761 - 766)。在此,我们描述了一种从内耳柯蒂氏器文库中鉴定出的新型27 kDa蛋白。结构同源性建模显示该蛋白中存在一个与EB蛋白相似的CH结构域。Northern印迹和Western印迹证实该基因在包括脑、肺和睾丸在内的其他组织中表达。在柯蒂氏器中,这种蛋白定位于独特的大且排列有序的微管束中,这些微管束支撑着听觉感觉上皮中机械性坚硬柱状细胞的细长体。当在Cos - 7细胞中异位表达时,这种蛋白沿细胞质微管定位,促进微管束形成,并在高浓度诺考达唑和低温作用下有效稳定微管以防解聚。我们提出这种名为CLAMP的蛋白是一种新型MAP,代表CH结构域蛋白家族的一个新成员。