Lutter Darius, Ullrich Florian, Lueck Jennifer C, Kempa Stefan, Jentsch Thomas J
Leibniz-Institut für Molekulare Pharmakologie (FMP), D-13125 Berlin, Germany.
Max-Delbrück-Centrum für Molekulare Medizin (MDC), D-13125 Berlin, Germany.
J Cell Sci. 2017 Mar 15;130(6):1122-1133. doi: 10.1242/jcs.196253. Epub 2017 Feb 13.
In response to swelling, mammalian cells release chloride and organic osmolytes through volume-regulated anion channels (VRACs). VRACs are heteromers of LRRC8A and other LRRC8 isoforms (LRRC8B to LRRC8E), which are co-expressed in HEK293 and most other cells. The spectrum of VRAC substrates and its dependence on particular LRRC8 isoforms remains largely unknown. We show that, besides the osmolytes taurine and -inositol, LRRC8 channels transport the neurotransmitters glutamate, aspartate and γ-aminobutyric acid (GABA) and the co-activator D-serine. HEK293 cells engineered to express defined subsets of LRRC8 isoforms were used to elucidate the subunit-dependence of transport. Whereas LRRC8D was crucial for the translocation of overall neutral compounds like -inositol, taurine and GABA, and sustained the transport of positively charged lysine, flux of negatively charged aspartate was equally well supported by LRRC8E. Disruption of LRRC8B or LRRC8C failed to decrease the transport rates of all investigated substrates, but their inclusion into LRRC8 heteromers influenced the substrate preference of VRAC. This suggested that individual VRACs can contain three or more different LRRC8 subunits, a conclusion confirmed by sequential co-immunoprecipitations. Our work suggests a composition-dependent role of VRACs in extracellular signal transduction.
作为对肿胀的反应,哺乳动物细胞通过容积调节性阴离子通道(VRACs)释放氯离子和有机渗透溶质。VRACs是LRRC8A和其他LRRC8亚型(LRRC8B至LRRC8E)的异源二聚体,它们在HEK293细胞和大多数其他细胞中共同表达。VRAC底物的范围及其对特定LRRC8亚型的依赖性在很大程度上仍然未知。我们发现,除了渗透溶质牛磺酸和肌醇外,LRRC8通道还转运神经递质谷氨酸、天冬氨酸和γ-氨基丁酸(GABA)以及共激活剂D-丝氨酸。利用工程改造以表达特定LRRC8亚型子集的HEK293细胞来阐明转运的亚基依赖性。虽然LRRC8D对于像肌醇、牛磺酸和GABA这样的整体中性化合物的转运至关重要,并维持带正电荷的赖氨酸的转运,但带负电荷的天冬氨酸的通量同样得到LRRC8E的良好支持。LRRC8B或LRRC8C的破坏未能降低所有研究底物的转运速率,但将它们纳入LRRC8异源二聚体会影响VRAC的底物偏好。这表明单个VRAC可以包含三个或更多不同的LRRC8亚基,这一结论通过连续的共免疫沉淀得到证实。我们的工作表明VRACs在细胞外信号转导中具有依赖于组成的作用。