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Altered energy transfer from mitochondria to sarcoplasmic reticulum after cytoarchitectural perturbations in mice hearts

机译:小鼠心脏细胞结构扰动后线粒体能量转移至肌质网

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摘要

Sarcoplasmic reticulum (SR) calcium pump function requires a high local ATP/ADP ratio, which can be maintained by direct nucleotide channelling from mitochondria, and by SR-bound creatine kinase (CK)-catalysed phosphate-transfer from phosphocreatine. We hypothesized that SR calcium uptake supported by mitochondrial direct nucleotide channelling, but not bound CK, depends on the juxtaposition of these organelles. To test this, we studied a well-described model of cytoarchitectural disorganization, the muscle LIM protein (MLP)-null mouse heart. Subcellular organization was characterized using electron microscopy, and mitochondrial, SR and myofibrillar function were assessed in saponin-permeabilized fibres by measuring respiration rates and caffeine-induced tension transients. MLP-null hearts had fewer, less-tightly packed intermyofibrillar mitochondria, and more subsarcolemmal mitochondria. The apparent mitochondrial Km for ADP was significantly lower in the MLP-null heart than in control (175 ± 15 and 270 ± 33 μm, respectively), indicating greater ADP accessibility, although maximal respiration rate, mitochondrial content and total CK activity were unaltered. Active tension in the myofibres of MLP-null mice was 54% lower than in controls (39 ± 3 and 18 ± 1 mN mm−2, respectively), consistent with cytoarchitectural disorganization. SR calcium loading in the myofibres of MLP-null mice was similar to that in control myofibres when energy support was provided via Bound CK, but ∼36% lower than controls when energy support was provided by mitochondrial (P < 0.05). Mitochondrial support for SR calcium uptake was also specifically decreased in the desmin-null heart, which is another model of cytoarchitectural perturbation. Thus, despite normal oxidative capacity, direct nucleotide channelling to the SR was impaired in MLP deficiency, concomitant with looser mitochondrial packing and increased nucleotide accessibility to this organelle. Changes in cytoarchitecture may therefore impair subcellular energy transfer and contribute to energetic and contractile dysfunction.
机译:肌质网(SR)钙泵功能需要较高的局部ATP / ADP比,这可以通过线粒体的直接核苷酸通道以及由SR结合的肌酸激酶(CK)催化的磷酸肌酸的磷酸转移来维持。我们假设线粒体直接核苷酸通道引导而不是结合CK支持SR钙的摄取取决于这些细胞器的并置。为了测试这一点,我们研究了细胞骨架结构紊乱的模型,即肌肉LIM蛋白(MLP)无效的小鼠心脏。使用电子显微镜对亚细胞组织进行表征,并通过测量呼吸速率和咖啡因诱导的张力瞬变来评估皂素透化纤维中的线粒体,SR和肌原纤维功能。缺MLP的心脏的肌原纤维间线粒体较少,包装不紧密,而肌膜下线粒体较多。在无MLP的心脏中,ADP的表观线粒体Km显着低于对照组(分别为175±15和270±33μm),这表明ADP可及性更高,尽管最大呼吸速率,线粒体含量和总CK活性未改变。 MLP无效小鼠的肌纤维中的主动张力比对照组低54%(分别为39±3和18±1 mN mm −2 ),与细胞结构紊乱一致。当通过束缚CK提供能量支持时,无MLP小鼠的肌纤维中SR钙负荷与对照肌纤维相似,但是当通过线粒体提供能量支持时,SR钙负荷比对照组低约36%(P <0.05)。线粒体对SR钙摄取的支持在除结实的心脏中也特别减少,这是细胞结构摄动的另一种模型。因此,尽管具有正常的氧化能力,但由于MLP缺乏,直接向SR的核苷酸通道传导受到损害,伴随着较宽松的线粒体堆积和增加了对该细胞器的核苷酸可及性。因此,细胞结构的改变可能会损害亚细胞的能量转移,并导致精力充沛和收缩功能障碍。

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