Bustamante J O, Michelette E R, Geibel J P, Hanover J A, McDonnell T J, Dean D A
The Nuclear Physiology Laboratory, Universidade Tiradentes, Praia Aruana, Brazil.
Pflugers Arch. 2000 Apr;439(6):829-37. doi: 10.1007/s004249900233.
Macromolecular translocation (MMT) across the nuclear envelope (NE) occurs exclusively through the nuclear pore complex (NPC). Therefore, the diameter of the NPC aqueous/electrolytic channel (NPCC) is important for cellular structure and function. The NPCC diameter was previously determined to be approximately equal to 10 nm with electron microscopy (EM) using the translocation of colloidal gold particles. Here we present patch-clamp and fluorescence microscopy data from adult cardiomyocyte nuclei that demonstrate the use of patch-clamp for assessing NPCC diameter. Fluorescence microscopy with B-phycoerythrin (BPE, 240 kDa) conjugated to a nuclear localization signal (NLS) demonstrated that these nuclei were competent for NPC-mediated MMT (NPC-MMT). Furthermore, when exposed to an appropriate cell lysate, the nuclei expressed enhanced green fluorescence protein (EGFP) after 5-10 h of incubation with the plasmid for this protein (pEGFP, 3.1 MDa). Nucleus-attached patch-clamp showed that colloidal gold particles were not useful probes; they modified NPCC gating. As a result of this finding, we searched for an inert class of particles that could be used without irreversibly affecting NPCC gating and found that fluorescently labeled Starburst dendrimers, a distinct class of polymers, were useful. Our patch-clamp and fluorescence microscopy data with calibrated dendrimers indicate that the cardiomyocyte NPCC diameter varies between 8 and 9 nm. These studies open a new direction in the investigation of live, continuous NPC dynamics under physiological conditions.
大分子通过核膜(NE)的转运(MMT)仅通过核孔复合体(NPC)发生。因此,核孔复合体水相/电解质通道(NPCC)的直径对细胞结构和功能很重要。先前使用胶体金颗粒的转运通过电子显微镜(EM)确定NPCC直径约等于10 nm。在这里,我们展示了来自成年心肌细胞核的膜片钳和荧光显微镜数据,这些数据证明了使用膜片钳评估NPCC直径。用与核定位信号(NLS)偶联的藻红蛋白B(BPE,240 kDa)进行荧光显微镜检查表明,这些细胞核能够进行NPC介导的MMT(NPC-MMT)。此外,当暴露于合适的细胞裂解液中时,在用该蛋白质的质粒(pEGFP,3.1 MDa)孵育5-10小时后,细胞核表达增强型绿色荧光蛋白(EGFP)。细胞核附着膜片钳显示胶体金颗粒不是有用的探针;它们改变了NPCC门控。基于这一发现,我们寻找了一类可以在不不可逆地影响NPCC门控的情况下使用的惰性颗粒,发现荧光标记的星爆树枝状大分子,一种独特的聚合物类别,是有用的。我们使用校准树枝状大分子的膜片钳和荧光显微镜数据表明,心肌细胞NPCC直径在8至9 nm之间变化。这些研究为在生理条件下研究活的、连续的NPC动力学开辟了一个新方向。