Department of Internal Medicine, Section on Gerontology and Geriatric Medicine, Wake Forest School of Medicine, 1 Medical Center Boulevard, Winston-Salem, NC 27157, USA.
Cytoskeleton (Hoboken). 2013 Mar;70(3):134-47. doi: 10.1002/cm.21095. Epub 2013 Feb 1.
Troponin T (TnT) plays a major role in striated muscle contraction. We recently demonstrated that the fast skeletal muscle TnT3 isoform is localized in the muscle nucleus, and either its full-length or COOH-terminus leads to muscle cell apoptosis. Here, we further explored the mechanism by which it enters the nucleus and promotes cytotoxicity. Amino acid truncation and substitution showed that its COOH-terminus contains a dominant nuclear/nucleolar localization sequence (KLKRQK) and the basic lysine and arginine residues might play an important role in the nuclear retention and nucleolar enrichment of KLKRQK-DsRed fusion proteins. Deleting this domain or substituting lysine and arginine residues (KLAAQK) resulted in a dramatic loss of TnT3 nuclear and nucleolar localization. In contrast, the GATAKGKVGGRWK domain-DsRed construct localized exclusively in the cytoplasm, indicating that a nuclear exporting sequence is possibly localized in this region. Additionally, we identified a classical DNA-binding leucine zipper domain (LZD) which is conserved among TnT isoforms and species. Deletion of LZD or KLKRQK sequence significantly reduced cell apoptosis compared to full-length TnT3. We conclude that TnT3 contains both a nuclear localization signal and a DNA-binding domain, which may mediate nuclear/nucleolar signaling and muscle cell apoptosis.
肌钙蛋白 T(TnT)在横纹肌收缩中起主要作用。我们最近证明,快速骨骼肌 TnT3 同工型定位于肌核中,其全长或 COOH 端导致肌细胞凋亡。在这里,我们进一步探讨了它进入核并促进细胞毒性的机制。氨基酸截断和取代表明,其 COOH 端含有一个显性核/核仁定位序列(KLKRQK),碱性赖氨酸和精氨酸残基可能在 KLKRQK-DsRed 融合蛋白的核保留和核仁富集中起重要作用。删除该结构域或取代赖氨酸和精氨酸残基(KLAAQK)导致 TnT3 核和核仁定位明显丢失。相比之下,GATAKGKVGGRWK 结构域-DsRed 构建体仅定位于细胞质中,表明可能存在核输出序列位于该区域。此外,我们鉴定了一种经典的 DNA 结合亮氨酸拉链结构域(LZD),该结构域在 TnT 同工型和种属中保守。与全长 TnT3 相比,删除 LZD 或 KLKRQK 序列显著减少了细胞凋亡。我们得出结论,TnT3 既含有核定位信号又含有 DNA 结合结构域,这可能介导核/核仁信号转导和肌细胞凋亡。