Patel Chirag A, Ghiselli Giancarlo
Department of Pathology and Cell Biology, Thomas Jefferson University, Philadelphia, 19107, USA.
BMC Cell Biol. 2005 Jan 18;6(1):3. doi: 10.1186/1471-2121-6-3.
The structural maintenance of chromosome proteins SMC1 and SMC3 play an important role in the maintenance of chromosomal integrity by preventing the premature separation of the sister chromatids at the onset of anaphase. The two proteins are constitutive components of the multimeric complex cohesin and form dimers by interacting at their central globular regions.
In order to identify proteins that by binding to SMC3 may interfere with the protein dimerization process, a human cDNA library was screened by the yeast two-hybrid system by using the hinge region of SMC3 as bait. This has lead to the identification of Hinderin, a novel five domains protein including two coiled-coil motifs and sharing a strikingly structural similarity to the SMC family of proteins. Hinderin is ubiquitously expressed in human tissues. Orthologue forms of the protein are present in other vertebrates but not in lower organisms. A mapping of the interaction sites revealed that the N- and C-terminal globular domains mediate the binding of Hinderin to SMC3. Hinderin/SMC3 complexes could be recovered by immunoprecipitation from cell lysates using an anti-SMC3 antibody, thus demonstrating that the two proteins interact in vivo. On the contrary, Hinderin did not interact with SMC1. In vivo the rate of SMC1/SMC3 interaction was decreased by the ectopic expression of Hinderin.
Hinderin is a novel binding partner of SMC3. Based on its ability to modulate SMC1/SMC3 interaction we postulate that Hinderin affects the availability of SMC3 to engage in the formation of multimeric protein complexes.
染色体结构维持蛋白SMC1和SMC3通过防止后期开始时姐妹染色单体过早分离,在维持染色体完整性方面发挥重要作用。这两种蛋白是多聚体复合物黏连蛋白的组成成分,通过在其中心球状区域相互作用形成二聚体。
为了鉴定通过与SMC3结合可能干扰蛋白二聚化过程的蛋白,利用酵母双杂交系统,以SMC3的铰链区为诱饵,筛选了人cDNA文库。这导致了阻碍蛋白(Hinderin)的鉴定,它是一种新型的五结构域蛋白,包括两个卷曲螺旋基序,与SMC蛋白家族具有惊人的结构相似性。阻碍蛋白在人体组织中普遍表达。该蛋白的直系同源形式存在于其他脊椎动物中,但在低等生物中不存在。相互作用位点的定位显示,N端和C端球状结构域介导阻碍蛋白与SMC3的结合。使用抗SMC3抗体,通过免疫沉淀可从细胞裂解物中回收阻碍蛋白/SMC3复合物,从而证明这两种蛋白在体内相互作用。相反,阻碍蛋白不与SMC1相互作用。在体内,阻碍蛋白的异位表达降低了SMC1/SMC3相互作用的速率。
阻碍蛋白是SMC3的新型结合伴侣。基于其调节SMC1/SMC3相互作用的能力,我们推测阻碍蛋白会影响SMC3参与多聚体蛋白复合物形成的可用性。