首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Excitation–contraction coupling is unaffected by drastic alteration of the sequence surrounding residues L720–L764 of the α1S II-III loop
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Excitation–contraction coupling is unaffected by drastic alteration of the sequence surrounding residues L720–L764 of the α1S II-III loop

机译:激励-收缩耦合不受影响 通过剧烈改变残基周围的序列 α1SII-III回路的L720–L764

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摘要

The II-III loop of the skeletal muscle dihydropyridine receptor (DHPR) α1S subunit is responsible for bidirectional-signaling interactions with the ryanodine receptor (RyR1): transmitting an orthograde, excitation–contraction (EC) coupling signal to RyR1 and receiving a retrograde, current-enhancing signal from RyR1. Previously, several reports argued for the importance of two distinct regions of the skeletal II-III loop (residues R681–L690 and residues L720–Q765, respectively), claiming for each a key function in DHPR–RyR1 communication. To address whether residues 720–765 of the II-III loop are sufficient to enable skeletal-type (Ca2+ entry-independent) EC coupling and retrograde interaction with RyR1, we constructed a green fluorescent protein (GFP)-tagged chimera (GFP-SkLM) having rabbit skeletal (Sk) DHPR sequence except for a II-III loop (L) from the DHPR of the house fly, Musca domestica (M). The Musca II-III loop (75% dissimilarity to α1S) has no similarity to α1S in the regions R681–L690 and L720–Q765. GFP-SkLM expressed in dysgenic myotubes (which lack endogenous α1S subunits) was unable to restore EC coupling and displayed strongly reduced Ca2+ current densities despite normal surface expression levels and correct triad targeting (colocalization with RyR1). Introducing rabbit α1S residues L720–L764 into the Musca II-III loop of GFP-SkLM (substitution for Musca DHPR residues E724–T755) completely restored bidirectional coupling, indicating its dependence on α1S loop residues 720–764 but its independence from other regions of the loop. Thus, 45 α1S-residues embedded in a very dissimilar background are sufficient to restore bidirectional coupling, indicating that these residues may be a site of a protein–protein interaction required for bidirectional coupling.
机译:骨骼肌二氢吡啶受体(DHPR)α1S亚基的II-III环负责与ryanodine受体(RyR1)进行双向信号相互作用:向RyR1传递原位,激发-收缩(EC)耦合信号并接收逆行,来自RyR1的电流增强信号。以前,有几篇报道主张骨骼II-III环的两个不同区域(分别为残基R681-L690和残基L720-Q765)的重要性,并声称它们在DHPR-RyR1通讯中都具有关键作用。为了解决II-III环的720-765位残基是否足以使骨骼型(Ca 2 + 进入独立)EC偶联以及与RyR1逆行相互作用,我们构建了绿色荧光蛋白(带有GFP)标签的嵌合体(GFP-SkLM),具有除家蝇(Musca domestica(M))的DHPR中的II-III环(L)以外的兔骨骼(Sk)DHPR序列。 Musca II-III环(与α1S相似度为75%)在R681–L690和L720–Q765地区与α1S没有相似性。绿色荧光蛋白 表达于发育不良的肌管(缺乏内源性 α1S亚基)无法恢复EC耦合, 表现出显着降低的Ca 2 + 电流密度,尽管 正常的表面表达水平和正确的三合会靶向 (与RyR1共定位)。兔α1S介绍 残基L720–L764进入Musca II-III环 GFP-SkLM(替代Musca DHPR残基 E724–T755)完全恢复了双向耦合,表明其 依赖于α1S环残基720–764,但其 与循环其他区域的独立性。因此,45 嵌入非常不同背景的α1S残基是 足以恢复双向耦合,表明这些 残留可能是蛋白质相互作用所需的蛋白质 双向耦合。

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