首页> 外文期刊>The Journal of biological chemistry >Hydrophobic Imbalance in the Cytoplasmic Domain of Phospholamban Is a Determinant for Lethal Dilated Cardiomyopathy
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Hydrophobic Imbalance in the Cytoplasmic Domain of Phospholamban Is a Determinant for Lethal Dilated Cardiomyopathy

机译:磷蛋白的细胞质结构域中的疏水性不平衡是致命扩张心肌病的决定因素

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摘要

The sarco(endo)plasmic reticulum calcium ATPase (SERCA) and its regulatory partner phospholamban (PLN) are essential for myocardial contractility. Arg9 → Cys (R9C) and Arg14 deletion (R14del) mutations in PLN are associated with lethal dilated cardiomyopathy in humans. To better understand these mutations, we made a series of amino acid substitutions in the cytoplasmic domain of PLN and tested their ability to inhibit SERCA. R9C is a complete loss-of-function mutant of PLN, whereas R14del is a mild loss-of-function mutant. When combined with wild-type PLN to simulate heterozygous conditions, the mutants had a dominant negative effect on SERCA function. A series of targeted mutations in this region of the PLN cytoplasmic domain (8TRSAIRR14) demonstrated the importance of hydrophobic balance in proper PLN regulation of SERCA. We found that Arg9 → Leu and Thr8 → Cys substitutions mimicked the behavior of the R9C mutant, and an Arg14 → Ala substitution mimicked the behavior of the R14del mutant. The results reveal that the change in hydrophobicity resulting from the R9C and R14del mutations is sufficient to explain the loss of function and persistent interaction with SERCA. Hydrophobic imbalance in the cytoplasmic domain of PLN appears to be a predictor for the development and progression of dilated cardiomyopathy.
机译:Sarco(Endo)血浆网钙ATP酶(Serca)及其调节伴侣磷蛋白(PLN)对于心肌收缩性至关重要。 ARG9→CYS(R9C)和PLN中的删除(R14DEL)突变与人类中的致死扩张心肌病相关。为了更好地了解这些突变,我们在PLN的细胞质结构域中制作了一系列氨基酸取代,并测试了它们抑制Serca的能力。 R9C是PLN的完全函数突变体,而R14DEL是一种温和的函数突变体。当与野生型PLN结合以模拟杂合条件时,突变体对SERCA功能具有显着的负面影响。 PLN细胞质结构域(8TRSAIRR14)的该区域中的一系列靶向突变显示了疏水平衡在SERCA的适当PLN调节中的重要性。我们发现arg9→leu和thr8→cys替换模仿R9C突变体的行为,而Arg14→Ala替换模仿R14Del突变体的行为。结果表明,由R9C和R14DEL突变引起的疏水性的变化足以解释与Serca的功能和持续相互作用的丧失。 PLN的细胞质结构域中的疏水性不平衡似乎是扩张心肌病的开发和进展的预测因子。

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