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肌醇多磷酸盐在一种不同于连接肌浆网的心脏膜亚型中调节钙离子外流。

Inositol polyphosphates regulate Ca2+ efflux in a cardiac membrane subtype distinct from junctional sarcoplasmic reticulum.

作者信息

Quist E E, Quist C W, Vasan R

机构信息

Department of Pharmacology, University of North Texas Health Science Center at Fort Worth 76107, USA.

出版信息

Arch Biochem Biophys. 2000 Dec 1;384(1):181-9. doi: 10.1006/abbi.2000.2092.

Abstract

The membrane location and mechanism of inositol 1,3,4,5-tetrakisphosphate (InsP4)-regulated Ca2+ uptake in cardiac membrane vesicles was investigated. In canine and rat membranes separated by sucrose density gradient centrifugation, InsP4-regulated Ca2+ uptake was slightly more enriched in low density than in higher density membranes. Membranes supporting InsP4-regulated Ca2+ uptake were correspondingly enriched in type 1 InsP3 receptors. Junctional sarcoplasmic reticulum (J-SR), enriched in sarcoplasmic reticulum Ca2+ ATPase (SERCA2a) and ryanodine receptors, separated predominantly with higher density membranes. In membranes supporting InsP4-regulated Ca2+ uptake, Ca2+ uptake was facilitated by a high Ca2+ affinity carrier that was insensitive to thapsigargin. Ca2+ uptake in J-SR was mediated by thapsigargin-sensitive SERCA2a. Net Ca accumulation was enhanced by oxalate in both SR subtypes. Although Ca2+-carrier-mediated Ca2+ uptake was ATP independent, ATP indirectly regulated net Ca2+ accumulation by modifying Ca2+ efflux via a Ca2+ channel with properties of type 1 InsP3 receptors. In the presence of < or = 0.1 mM ATP, InsP4 enhanced Ca2+ accumulation whereas InsP4 inhibited Ca2+ uptake at higher ATP concentrations. In the presence of 0.15 mM ATP, InsP4 stimulated Ca2+ efflux from vesicles preloaded with Ca. Several other InsP4 isomers and 1,3,4-InsP3 also stimulated Ca2+ efflux but with slightly less potency than 1,3,4,5-InsP4. Ruthenium red enhanced net Ca accumulation by the Ca2+ carrier and reduced the potency of ATP, InsP4, and InsP3 to stimulate Ca2+ efflux in vesicles. In summary, this investigation shows that a Ca2+ carrier facilitates Ca loading in a sarcoplasmic reticulum subtype distinct from J-SR. InsP4 and InsP3 are proposed to regulate Ca2+ efflux in low density SR by acting on an ATP-modulated Ca2+ channel with properties of type 1 InsP3 receptors.

摘要

研究了1,3,4,5-四磷酸肌醇(InsP4)调节心肌膜囊泡中Ca2+摄取的膜定位及机制。在通过蔗糖密度梯度离心分离的犬和大鼠膜中,InsP4调节的Ca2+摄取在低密度膜中的富集程度略高于高密度膜。支持InsP4调节的Ca2+摄取的膜相应地富含1型InsP3受体。富含肌浆网Ca2+ATP酶(SERCA2a)和兰尼碱受体的连接肌浆网(J-SR)主要与高密度膜一起分离。在支持InsP4调节的Ca2+摄取的膜中,Ca2+摄取由对毒胡萝卜素不敏感的高Ca2+亲和力载体促进。J-SR中的Ca2+摄取由毒胡萝卜素敏感的SERCA2a介导。草酸盐在两种肌浆网亚型中均增强了净Ca积累。尽管Ca2+载体介导的Ca2+摄取不依赖ATP,但ATP通过修饰具有1型InsP3受体特性的Ca2+通道的Ca2+外流间接调节净Ca2+积累。在ATP浓度≤0.1 mM时,InsP4增强Ca2+积累,而在较高ATP浓度下InsP4抑制Ca2+摄取。在存在0.15 mM ATP的情况下,InsP4刺激预先加载Ca的囊泡中的Ca2+外流。其他几种InsP4异构体和1,3,4-InsP3也刺激Ca2+外流,但效力略低于1,3,4,5-InsP4。钌红增强了Ca2+载体的净Ca积累,并降低了ATP、InsP4和InsP3刺激囊泡中Ca2+外流的效力。总之,本研究表明,一种Ca2+载体促进了与J-SR不同的肌浆网亚型中的Ca加载。InsP4和InsP3被认为通过作用于具有1型InsP3受体特性的ATP调节的Ca2+通道来调节低密度肌浆网中的Ca2+外流。

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