Cui Yanfang, Tae Han-Shen, Norris Nicole C, Karunasekara Yamuna, Pouliquin Pierre, Board Philip G, Dulhunty Angela F, Casarotto Marco G
Division of Molecular Bioscience, John Curtin School of Medical Research, Australian National University, PO Box 334, Canberra, ACT 2601, Australia.
Int J Biochem Cell Biol. 2009 Mar;41(3):677-86. doi: 10.1016/j.biocel.2008.08.004. Epub 2008 Aug 8.
The II-III loop of the dihydropyridine receptor (DHPR) alpha(1s) subunit is a modulator of the ryanodine receptor (RyR1) Ca(2+) release channel in vitro and is essential for skeletal muscle contraction in vivo. Despite its importance, the structure of this loop has not been reported. We have investigated its structure using a suite of NMR techniques which revealed that the DHPR II-III loop is an intrinsically unstructured protein (IUP) and as such belongs to a burgeoning structural class of functionally important proteins. The loop does not possess a stable tertiary fold: it is highly flexible, with a strong N-terminal helix followed by nascent helical/turn elements and unstructured segments. Its residual structure is loosely globular with the N and C termini in close proximity. The unstructured nature of the II-III loop may allow it to easily modify its interaction with RyR1 following a surface action potential and thus initiate rapid Ca(2+) release and contraction. The in vitro binding partner for the II-III was investigated. The II-III loop interacts with the second of three structurally distinct SPRY domains in RyR1, whose function is unknown. This interaction occurs through two preformed N-terminal alpha-helical regions and a C-terminal hydrophobic element. The A peptide corresponding to the helical N-terminal region is a common probe of RyR function and binds to the same SPRY domain as the full II-III loop. Thus the second SPRY domain is an in vitro binding site for the II-III loop. The possible in vivo role of this region is discussed.
二氢吡啶受体(DHPR)α(1s)亚基的II-III环在体外是兰尼碱受体(RyR1)钙释放通道的调节剂,在体内对骨骼肌收缩至关重要。尽管其很重要,但该环的结构尚未见报道。我们使用一系列核磁共振技术研究了其结构,结果表明DHPR II-III环是一种内在无序蛋白(IUP),因此属于一类新兴的具有重要功能的结构蛋白。该环不具有稳定的三级结构:它高度灵活,有一个强N端螺旋,接着是新生的螺旋/转角元件和无结构片段。其残余结构呈松散球状,N端和C端靠得很近。II-III环的无序性质可能使其在表面动作电位后能轻松改变与RyR1的相互作用,从而引发快速的钙释放和收缩。我们研究了II-III环在体外的结合伴侣。II-III环与RyR1中三个结构不同的SPRY结构域中的第二个相互作用,其功能尚不清楚。这种相互作用通过两个预先形成的N端α螺旋区域和一个C端疏水元件发生。对应于螺旋N端区域的A肽是RyR功能的常用探针,与完整的II-III环结合到同一个SPRY结构域。因此,第二个SPRY结构域是II-III环在体外的结合位点。我们讨论了该区域在体内可能的作用。