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首页> 外文期刊>The Journal of Physiology >Cytosolic and mitochondrial Ca2+ signals in patch clamped mammalian ventricular myocytes.
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Cytosolic and mitochondrial Ca2+ signals in patch clamped mammalian ventricular myocytes.

机译:膜片固定的哺乳动物心室肌细胞中的胞质和线粒体Ca2 +信号。

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摘要

1. Ventricular myocytes isolated from ferret or cat were loaded with the acetoxymethyl ester form of indo-1 (indo-1 AM) such that approximately 75% of cellular indo-1 was mitochondrial. The intramitochondrial indo-1 concentration was 0.5-2 mM. 2. Myocytes were also voltage clamped (membrane capacitance, Cm = 100 pF) and a typical wash-out time constant of cytosolic indo-1 by a patch pipette was found to be approximately 300 s. Depolarizations to +110 mV produced graded and progressive cellular Ca2+ load via Na(+)-Ca2+ exchange. 3. During these relatively slow Ca2+ transients, cell contraction (delta L) paralleled fluorescence ratio signals (R) such that delta L could be used as a bioassay of cytosolic [Ca2+] ([Ca2+]c), where [Ca2+]CL is the inferred signal which is delayed by approximately 200 ms from true [Ca2+]c. 4. In myocytes without Mn2+ quench, the kinetics of the total cellular indo-1 signal, delta R (including cytosolic and mitochondrial components), match delta L during stimulations at low basal [Ca2+]i. However, after progressive Ca2+ loading, delta R kinetics deviate from delta L dramatically. The deviation can be completely blocked by a potent mitochondrial Ca2+ uniport blocker, Ru360. 5. When cytosolic indo-1 is quenched by Mn2+, initial moderate stimulation triggers contractions (delta L), but no change in indo-1 signal, indicating both the absence of cytosolic Ca(2+)-sensitive indo-1 and unchanged mitochondrial [Ca2+] (delta [Ca2+]m). Subsequent stronger stimulation evoked larger delta L and also delta R. The threshold [Ca2+]c for mitochondrial Ca2+ uptake was 300-500 nM, similar to that without Mn2+ quench. 6. At high Ca2+ loads where delta [Ca2+]m is detected, the time course of [Ca2+]m was different from that of [Ca2+]c. Peak [Ca2+]m after stimulation has an approximately 1 s latency with respect to [Ca2+]c, and [Ca2+]m decline is extremely slow. 7. Upon a Ca2+ influx which increased [Ca2+]c by 0.4 microM and [Ca2+]m by 0.2 microM, total mitochondrial Ca2+ uptake was approximately 13 mumol (1 mitochondria)-1. 8. With Mn2+ quench of cytosolic indo-1, there was no mitochondrial uptake of Mn2+ until the point at which mitochondrial Ca2+ uptake became apparent. However, after mitochondrial Ca2+ uptake starts, mitochondria continually take up Mn2+ even during relaxation, when [Ca2+]c is low. 9. It is concluded that mitochondria in intact myocytes do not take up detectable amounts of Ca2+ during individual contractions, unless resting [Ca2+]c exceeds 300-500 nM. At high cell Ca2+ loads and [Ca2+]c, mitochondrial Ca2+ transients occur during the twitch, but with much slower kinetics than those of [Ca2+]c.
机译:1.从雪貂或猫中分离出的心室肌细胞上装有indo-1(indo-1 AM)的乙酰氧基甲酯形式,使得大约75%的细胞indo-1是线粒体。线粒体内的indo-1浓度为0.5-2 mM。 2.还对心肌细胞进行电压钳制(膜电容,Cm = 100 pF),并发现通过贴片移液管清除胞浆indo-1的典型时间常数约为300 s。通过Na(+)-Ca2 +交换,去极化至+110 mV产生了渐变的渐进式细胞Ca2 +负载。 3.在这些相对较慢的Ca2 +瞬变过程中,细胞收缩(delta L)与荧光比率信号(R)平行,因此delta L可用作细胞质[Ca2 +]([Ca2 +] c)的生物测定,其中[Ca2 +] CL为从真实的[Ca2 +] c延迟大约200毫秒的推断信号。 4.在没有Mn2 +淬灭的心肌细胞中,在低基础[Ca2 +] i刺激下,总细胞indo-1信号的动力学动力学三角洲R(包括胞质和线粒体成分)与delta L相匹配。但是,在逐步加载Ca2 +后,δR动力学显着偏离δL。有效的线粒体Ca2 +单端口阻滞剂Ru360可以完全阻止这种偏差。 5.当胞质的indo-1被Mn2 +淬灭时,最初的中等刺激会触发收缩(δL),但indo-1信号没有变化,表明既没有胞质Ca(2+)敏感的indo-1,也没有线粒体不变。 [Ca 2+](δ[Ca 2+] m)。随后的更强刺激引起较大的ΔL和ΔR。线粒体Ca 2+吸收的阈值[Ca 2+] c为300-500 nM,类似于没有Mn 2+淬灭的阈值。 6.在高Ca2 +负载下,检测到增量[Ca2 +] m,[Ca2 +] m的时间过程与[Ca2 +] c的时间过程不同。刺激后的峰值[Ca2 +] m相对于[Ca2 +] c具有大约1 s的潜伏期,并且[Ca2 +] m的下降非常缓慢。 7.当Ca 2+流入使[Ca 2+] c增加0.4 microM,[Ca 2+] m增加0.2 micro M时,线粒体Ca 2+的总摄取约为13μmol(1个线粒体)-1。 8.随着胞质indo-1的Mn2 +淬灭,直到线粒体Ca2 +吸收明显出现之前,线粒体才吸收Mn2 +。然而,线粒体开始吸收Ca2 +后,即使[Ca2 +] c低,线粒体也持续吸收Mn2 +。 9.结论是,除非静止的[Ca2 +] c超过300-500 nM,否则完整的心肌细胞中的线粒体在单个收缩期间不会吸收可检测量的Ca2 +。在高细胞Ca2 +负荷和[Ca2 +] c下,线粒体Ca2 +瞬变在抽搐过程中发生,但动力学比[Ca2 +] c慢得多。

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