Magron Audrey, Elowe Sabine, Carreau Madeleine
CHU de Québec, CHUL Research Center, Québec, QC, Canada.
Department of Pediatrics, Université Laval, Québec, QC, Canada; CHU de Québec, CHUL Research Center, Québec, QC, Canada.
PLoS One. 2015 Oct 14;10(10):e0140612. doi: 10.1371/journal.pone.0140612. eCollection 2015.
The Fanconi anemia (FA) proteins are involved in a signaling network that assures the safeguard of chromosomes. To understand the function of FA proteins in cellular division events, we investigated the interaction between Stathmin-1 (STMN1) and the FA group C (FANCC) protein. STMN1 is a ubiquitous cytosolic protein that regulates microtubule dynamics. STMN1 activities are regulated through phosphorylation-dephosphorylation mechanisms that control assembly of the mitotic spindle, and dysregulation of STMN1 phosphorylation is associated with mitotic aberrancies leading to chromosome instability and cancer progression. Using different biochemical approaches, we showed that FANCC interacts and co-localizes with STMN1 at centrosomes during mitosis. We also showed that FANCC is required for STMN1 phosphorylation, as mutations in FANCC reduced serine 16- and 38-phosphorylated forms of STMN1. Phosphorylation of STMN1 at serine 16 is likely an event dependent on a functional FA pathway, as it is reduced in FANCA- and FANCD2-mutant cells. Furthermore, FA-mutant cells exhibited mitotic spindle anomalies such as supernumerary centrosomes and shorter mitotic spindles. These results suggest that FA proteins participate in the regulation of cellular division via the microtubule-associated protein STMN1.
范可尼贫血(FA)蛋白参与了一个确保染色体安全的信号网络。为了了解FA蛋白在细胞分裂事件中的功能,我们研究了Stathmin-1(STMN1)与FA C组(FANCC)蛋白之间的相互作用。STMN1是一种普遍存在的胞质蛋白,可调节微管动力学。STMN1的活性通过控制有丝分裂纺锤体组装的磷酸化-去磷酸化机制进行调节,STMN1磷酸化的失调与导致染色体不稳定和癌症进展的有丝分裂异常有关。使用不同的生化方法,我们发现FANCC在有丝分裂期间与STMN1在中心体相互作用并共定位。我们还表明FANCC是STMN1磷酸化所必需的,因为FANCC中的突变减少了STMN1的丝氨酸16和38磷酸化形式。STMN1丝氨酸16位的磷酸化可能是一个依赖于功能性FA途径的事件,因为在FANCA和FANCD2突变细胞中它会减少。此外,FA突变细胞表现出有丝分裂纺锤体异常,如多余的中心体和较短的有丝分裂纺锤体。这些结果表明FA蛋白通过微管相关蛋白STMN1参与细胞分裂的调节。