Kanno Yuichiro, Suzuki Motoyoshi, Miyazaki Yukari, Matsuzaki Midori, Nakahama Takayuki, Kurose Kouichi, Sawada Jun-ichi, Inouye Yoshio
Faculty of Pharmaceutical Sciences, Toho University, 2-2-1 Miyama, Funabashi, Chiba 274-8510, Japan.
Biochim Biophys Acta. 2007 Jun;1773(6):934-44. doi: 10.1016/j.bbamcr.2007.03.020. Epub 2007 Apr 4.
Fluorescence recovery after photobleaching (FRAP) in spontaneous multinuclear cells shows that both rat and human constitutive active/androstane receptors (CARs) are shuttling proteins with both nuclear localization signals (NLSs) and nuclear export signals (NESs). We previously identified two NLSs in rat CAR: NLS1 in the hinge region (residues 100-108) and NLS2 in the ligand-binding domain (residues 111-320). In the present study, we compared the intracellular localization signals between rat and human CARs. There was a marked difference in their intracellular localization in COS-7 cells because, unlike rat CAR, human CAR does not contain NLS1 due to an amino acid change at position 106. A CRM1-dependent leucine-rich NES, which is sensitive to an inhibitory effect of leptomycin B, was found in the cytoplasmic retention region previously identified within the ligand-binding domain of rat CAR (residues 220-258). We found that human CAR instead has a NES in the ligand-binding domain between residues 170 and 220. Also, we detected CRM1-independent C-terminal NESs between residues 317-358 of rat and human CARs. Removal of NLS1 by N-terminal truncation and mutation of xenochemical response signal caused rat CAR to localize in the cytoplasm of COS-7 cells, which we suspect is due to the masking of NLS2.
对自发多核细胞进行光漂白后荧光恢复(FRAP)实验表明,大鼠和人类的组成型活性雄甾烷受体(CAR)都是穿梭蛋白,同时具有核定位信号(NLS)和核输出信号(NES)。我们之前在大鼠CAR中鉴定出两个NLS:位于铰链区的NLS1(第100 - 108位氨基酸)和位于配体结合域的NLS2(第111 - 320位氨基酸)。在本研究中,我们比较了大鼠和人类CAR的细胞内定位信号。它们在COS - 7细胞中的细胞内定位存在显著差异,因为与大鼠CAR不同,人类CAR由于第106位氨基酸的变化而不包含NLS1。在先前确定的大鼠CAR配体结合域内的细胞质保留区域(第220 - 258位氨基酸)中发现了一个依赖CRM1的富含亮氨酸的NES,它对雷帕霉素B的抑制作用敏感。我们发现人类CAR在第170至220位氨基酸之间的配体结合域中有一个NES。此外,我们在大鼠和人类CAR的第317 - 358位氨基酸之间检测到不依赖CRM1的C末端NES。通过N端截短和异源化学应答信号突变去除NLS1会导致大鼠CAR定位于COS - 7细胞的细胞质中,我们怀疑这是由于NLS2被掩盖所致。