Zheng Haifeng, Nam Joo Hyun, Nguen Yen Hoang, Kang Tong Mook, Kim Tae Jin, Earm Yung E, Kim Sung Joon
Department of Physiology, Seoul National University College of Medicine, 28 Yongon-dong, Chongro-gu, Seoul, 110-799, South Korea.
Pflugers Arch. 2008 Aug;456(5):867-81. doi: 10.1007/s00424-008-0445-1. Epub 2008 Jan 24.
Lymphocytes express voltage-gated (Kv) and Ca(2+)-activated (IKCa1) K(+) channels. Recently, we found that WEHI-231, an immature B cell line, expresses voltage-independent K(+) channels called large-conductance background K( + ) channels (LK(bg)). Arachidonic acid (AA) has attracted attention because of its potential regulatory roles in the apoptosis of immature B cells. To elucidate the functional targets of AA, we investigated the effects of AA on membrane currents, voltages, and cytoplasmic Ca(2+) concentration (Ca(2+)) of WEHI-231 and Bal-17 cells that represent immature and mature mouse B cells, respectively. In whole-cell patch clamp, both Kv and IKCa1 were inhibited by AA. On the other hand, AA activated LK(bg) current and non-selective cationic (NSC) current in WEHI-231 while only NSC current in Bal-17. Inside-out patch clamp study showed that AA directly activates LK(bg). AA induced hyperpolarization of WEHI-231 and depolarization of Bal-17 cells, respectively. The selective functional expression of LK(bg) and their activation by AA were also confirmed in the immature B cells (B220(+)/AA4.1(+)) freshly isolated from mouse spleen. In fura-2 spectrofluorimetry, AA induced persistent increase in Ca(2+) of WEHI-231 cells, which was attenuated by KCl-induced depolarization. In Bal-17 cell, however, AA induced only a transient increase of Ca(2+). In summary, the novel type of background K(+) channels (LK(bg)) in immature B cells is strongly activated while the other K(+) channels (Kv and IKCa1) commonly expressed in lymphocytes are inhibited by AA. The hyperpolarization and augmentation of Ca(2+) influx by LK(bg) activation might play a role in the response of immature B cells to AA.
淋巴细胞表达电压门控(Kv)和钙激活(IKCa1)钾通道。最近,我们发现未成熟B细胞系WEHI-231表达一种称为大电导背景钾通道(LK(bg))的电压非依赖性钾通道。花生四烯酸(AA)因其在未成熟B细胞凋亡中的潜在调节作用而受到关注。为了阐明AA的功能靶点,我们研究了AA对分别代表未成熟和成熟小鼠B细胞的WEHI-231和Bal-17细胞膜电流、电压和细胞质钙浓度(Ca(2+))的影响。在全细胞膜片钳实验中,Kv和IKCa1均被AA抑制。另一方面,AA激活了WEHI-231中的LK(bg)电流和非选择性阳离子(NSC)电流,而在Bal-17中仅激活了NSC电流。内面向外膜片钳研究表明,AA直接激活LK(bg)。AA分别诱导了WEHI-231的超极化和Bal-17细胞的去极化。在从小鼠脾脏新鲜分离的未成熟B细胞(B220(+)/AA4.1(+))中也证实了LK(bg)的选择性功能表达及其被AA激活。在fura-2荧光分光光度法中,AA诱导WEHI-231细胞的Ca(2+)持续增加,这被氯化钾诱导的去极化所减弱。然而,在Bal-17细胞中,AA仅诱导Ca(2+)短暂增加。总之,未成熟B细胞中的新型背景钾通道(LK(bg))被强烈激活,而淋巴细胞中普遍表达的其他钾通道(Kv和IKCa1)被AA抑制。LK(bg)激活引起的超极化和钙内流增加可能在未成熟B细胞对AA的反应中起作用。