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Regulation of the Sarcoplasmic Reticulum Calcium Pump by Divergent Phospholamban Isoforms in Zebrafish

机译:斑马鱼中不同的磷脂酰亚型对肌浆网钙泵的调节

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摘要

The sarcoplasmic reticulum calcium pump (SERCA) is regulated by the small integral membrane proteins phospholamban (PLN) and sarcolipin (SLN). These regulators have homologous transmembrane regions, yet they differ in their cytoplasmic and luminal domains. Although the sequences of PLN and SLN are practically invariant among mammals, they vary in fish. Zebrafish (zf) appear to harbor multiple PLN isoforms, one of which contains 18 sequence variations and a unique luminal extension. Characterization of this isoform (zfPLN) revealed that SERCA inhibition and reversal by phosphorylation were comparable with human PLN. To understand the sequence variations in zfPLN, chimeras were created by transferring the N terminus, linker, and C terminus of zfPLN onto human PLN. A chimera containing the N-terminal domain resulted in a mild loss of function, whereas a chimera containing the linker domain resulted in a gain of function. This latter effect was due to changes in basic residues in the linker region of PLN. Removing the unique luminal domain of zfPLN (53SFHGM) resulted in loss of function, whereas adding this domain to human PLN had a minimal effect on SERCA inhibition. We conclude that the luminal extension contributes to SERCA inhibition but only in the context of zfPLN. Although this domain is distinct from the SLN luminal tail, zfPLN appears to use a hybrid PLN-SLN inhibitory mechanism. Importantly, the different zebrafish PLN isoforms raise the interesting possibility that sarcoplasmic reticulum calcium handling and cardiac contractility may be regulated by the differential expression of PLN functional variants.
机译:肌浆网钙泵(SERCA)由小的整体膜蛋白phospholamban(PLN)和肌钙蛋白(SLN)调节。这些调节剂具有同源的跨膜区,但是它们的胞质和腔内结构域不同。尽管PLN和SLN的序列在哺乳动物中实际上是不变的,但它们在鱼类中却有所不同。斑马鱼(zf)似乎具有多种PLN亚型,其中之一包含18个序列变异和独特的腔扩展。此同工型(zfPLN)的特征表明,SERCA抑制和磷酸化逆转与人PLN相当。为了了解zfPLN中的序列变异,通过将zfPLN的N末端,接头和C末端转移到人PLN上来产生嵌合体。含有N末端结构域的嵌合体导致功能的轻度丧失,而含有接头结构域的嵌合体导致功能的增强。后一种效应是由于PLN接头区域中碱性残基的变化所致。去除zfPLN的独特腔结构域( 53 SFHGM)会导致功能丧失,而将此结构域添加到人PLN中对SERCA的抑制作用则很小。我们得出的结论是,腔扩展有助于SERCA抑制,但仅在zfPLN的情况下。尽管此域不同于SLN腔尾,但zfPLN似乎使用了杂化PLN-SLN抑制机制。重要的是,不同的斑马鱼PLN亚型增加了有趣的可能性,即肌浆网钙的处理和心脏收缩性可能受PLN功能性变体差异表达的调节。

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