Faulkner G, Pallavicini A, Comelli A, Salamon M, Bortoletto G, Ievolella C, Trevisan S, Kojic' S, Dalla Vecchia F, Laveder P, Valle G, Lanfranchi G
International Centre for Genetic Engineering and Biotechnology, Padriciano 99, I-34012 Trieste, Padova, Italy.
J Biol Chem. 2000 Dec 29;275(52):41234-42. doi: 10.1074/jbc.M007493200.
We report the identification and characterization of a novel 32-kDa protein expressed in skeletal muscle and located in the Z-disc of the sarcomere. We found that this protein binds to three other Z-disc proteins; therefore, we have named it FATZ, gamma-filamin/ABP-L, alpha-actinin and telethonin binding protein of the Z-disc. From yeast two-hybrid experiments we are able to show that the SR3-SR4 domains of alpha-actinin 2 are required to bind the COOH-terminal region of the FATZ as does gamma-filamin/ABP-L. Furthermore, by using a glutathione S-transferase overlay assay we find that FATZ also binds telethonin. The level of FATZ protein in muscle cells increases during differentiation, being clearly detectable before the onset of myosin. Although FATZ has no known interaction domains, it would appear to be involved in a complex network of interactions with other Z-band components. On the basis of the information known about its binding partners, we could envisage a central role for FATZ in the myofibrillogenesis. After screening our muscle expressed sequence tag data base and the public expressed sequence tag data bases, we were able to assemble two other muscle transcripts that show a high level of identity with FATZ in two different domains. Therefore, FATZ may be the first member of a small family of novel muscle proteins.
我们报告了一种在骨骼肌中表达且定位于肌节Z盘的新型32 kDa蛋白的鉴定与特性分析。我们发现该蛋白与其他三种Z盘蛋白结合;因此,我们将其命名为Z盘的FATZ、γ-细丝蛋白/ABP-L、α-辅肌动蛋白和隐钙蛋白结合蛋白。通过酵母双杂交实验,我们能够证明α-辅肌动蛋白2的SR3 - SR4结构域与FATZ的COOH末端区域结合,γ-细丝蛋白/ABP-L也是如此。此外,通过使用谷胱甘肽S-转移酶覆盖分析,我们发现FATZ也与隐钙蛋白结合。肌肉细胞中FATZ蛋白的水平在分化过程中增加,在肌球蛋白出现之前就能明显检测到。尽管FATZ没有已知的相互作用结构域,但它似乎参与了与其他Z带成分的复杂相互作用网络。基于已知的其结合伙伴的信息,我们可以设想FATZ在肌原纤维形成中起核心作用。在筛选我们的肌肉表达序列标签数据库和公共表达序列标签数据库后,我们能够组装出另外两个肌肉转录本,它们在两个不同结构域与FATZ具有高度同源性。因此,FATZ可能是一个新型肌肉蛋白小家族的首个成员。