Laboratory of Nuclear Proteins, Faculty of Biotechnology, University of Wrocław, Przybyszewskiego St. 63/78, 51-148 Wrocław, Poland.
Nucleus. 2011 Sep-Oct;2(5):478-88. doi: 10.4161/nucl.2.5.17864. Epub 2011 Sep 1.
Changes in the nuclear structure and function during the cell cycle are thought to be correlated with lamins phosphorylation. Here, we report the identification of new in vivo phosphorylation sites on Drosophila melanogater lamin Dm using immunoisolation and mass spectrometry with collision-induced peptide fragmentation (Electrospray-Linear Trap Quadrupole- Fourier Transform Ion Cyclotron Resonance MS/MS). We identified S19 and confirmed previously suggested S595 as phosphorylated amino acid residues on embryonic lamin Dm. We also found that T597 is phosphorylated in vivo in cultured Kc cells while S595 in embryos, which suggests that different neighboring phosphoacceptors may be modified within the same region. We demonstrate also that Drosophila melanogaster lamin Dm in very early (syncytial) embryos is almost completely dispersed through the entire embryo. Only fraction of lamin Dm is associated with nuclei and nuclear envelopes. In later stages, due to the synchronization of mitosis, lamin Dm may be both nuclear and cytoplasmic in the same embryo. Our results provide a new and essential data for better understanding of the lamin phosporylation in development and cell cycle regulation in Drosophila.
在细胞周期中,核结构和功能的变化被认为与核纤层蛋白磷酸化有关。在这里,我们使用免疫分离和质谱法(电喷雾-线性阱-四极杆-傅里叶变换离子回旋共振 MS/MS)报告了在黑腹果蝇中鉴定到新的体内磷酸化位点。我们鉴定了 S19,并确认了先前在胚胎核纤层蛋白 Dm 上建议的 S595 为磷酸化氨基酸残基。我们还发现,T597 在培养的 Kc 细胞中体内磷酸化,而 S595 在胚胎中磷酸化,这表明同一区域的不同邻近磷酸受体可能被修饰。我们还证明,在非常早期(合胞体)胚胎中的黑腹果蝇核纤层蛋白 Dm 几乎完全分散在整个胚胎中。只有核纤层蛋白 Dm 的一部分与核和核膜相关。在后期,由于有丝分裂的同步化,核纤层蛋白 Dm 可能在同一胚胎中既是核的又是细胞质的。我们的结果为更好地理解果蝇发育和细胞周期调控中的核纤层磷酸化提供了新的和重要的数据。