Kinnally K W, Zorov D B, Antonenko Y N, Snyder S H, McEnery M W, Tedeschi H
Department of Biological Sciences, State University of New York, Albany 12222.
Proc Natl Acad Sci U S A. 1993 Feb 15;90(4):1374-8. doi: 10.1073/pnas.90.4.1374.
The mitochrondrial benzodiazepine receptor (mBzR) binds a subset of benzodiazepines and isoquinoline carboxamides with nanomolar affinity and consists of the voltage-dependent anion channel, the adenine nucleotide translocator, and an 18-kDa protein. The effect of ligands of the mBzR on two inner mitochondrial membrane channel activities was determined with patch-clamp techniques. The relative inhibitory potencies of the drugs resemble their binding affinities for the mBzR. Ro5-4864 and protoporphyrin IX inhibit activity of the multiple conductance channel (MCC) and the mitochondrial centum-picosiemen (mCtS) channel activities at nanomolar concentrations. PK11195 inhibits mCtS activity at similar levels. Higher concentrations of protoporphyrin IX induce MCC but possibly not mCtS activity. Clonazepam, which has low affinity for mBzR, is at least 500 times less potent at both channel activities. Ro15-1788, which also has a low mBzR affinity, inhibits MCC at very high concentrations (16 microM). The findings indicate an association of these two channel activities with the proteins forming the mBzR complex and are consistent with an interaction of inner and outer membrane channels.
线粒体苯二氮䓬受体(mBzR)以纳摩尔亲和力结合一部分苯二氮䓬和异喹啉羧酰胺,它由电压依赖性阴离子通道、腺嘌呤核苷酸转运体和一种18 kDa的蛋白质组成。采用膜片钳技术测定了mBzR配体对两种线粒体内膜通道活性的影响。这些药物的相对抑制效力与其对mBzR的结合亲和力相似。Ro5-4864和原卟啉IX在纳摩尔浓度下可抑制多电导通道(MCC)和线粒体百皮西门子(mCtS)通道的活性。PK11195在相似水平上抑制mCtS活性。更高浓度的原卟啉IX可诱导MCC活性,但可能不会诱导mCtS活性。对mBzR亲和力较低的氯硝西泮,在两种通道活性上的效力至少低500倍。对mBzR亲和力也较低的Ro15-1788在非常高的浓度(16 μM)下可抑制MCC。这些发现表明这两种通道活性与形成mBzR复合物的蛋白质有关,并且与内膜和外膜通道之间的相互作用一致。