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首页> 外文期刊>Biochemistry >Residues 48 and 82 at the N-terminal hydrophobic pocket of rabbit skeletal muscle troponin-C photo-cross-link to Met121 of troponin-I.
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Residues 48 and 82 at the N-terminal hydrophobic pocket of rabbit skeletal muscle troponin-C photo-cross-link to Met121 of troponin-I.

机译:兔骨骼肌肌钙蛋白C的N端疏水口袋处的残基48和82与肌钙蛋白I的Met121光交联。

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摘要

It has been proposed [Herzberg et al. (1986) J. Biol. Chem. 261, 2638-2644], and confirmed by structural studies [Gagne et al. (1995) Nat. Struct. Biol. 2, 784-789], that the binding of Ca2+ to the triggering sites in troponin-C (TnC) causes the opening of the N-terminal hydrophobic pocket bound by the B, C, and D helices. This conformational change is believed to provide an additional binding site for troponin-I (TnI) and to lead to further events in the Ca2+ regulation process. To answer the question of which part of TnI interacts with this hydrophobic patch of TnC, we constructed two TnC mutants, each with a single cysteine, one at residue 48 between helices B and C and the other at residue 82 on the D helix. Each mutant was labeled with the photoactivatable cross-linker benzophenone-4-iodoacetamide, followed by reconstitution and UV irradiation. Studies were made in the binary complex composed of TnC and TnI, the ternary complex composed of TnC, TnI, and troponin-T (TnT), and the synthetic thin filament composed of troponin, tropomyosin, and F-actin. TnC-TnI photo-cross-linking was observed for both mutants and for all three types of complexes. Although no Ca2+ dependence in the photo-cross-linking was observed on the binary and ternary complexes, the extent of cross-linking was reduced in the absence vs the presence of Ca2+ in the thin filament. TnI Met121, five residues from the C-terminus of the inhibitory region, was identified as the cross-linking site for both TnC mutants using microsequencing and mass spectrometry following proteolysis. These results, obtained with intact TnC.TnI complexes, indicate that the TnI segment containing Met121 is in close contact with the N-terminal hydrophobic patch of TnC, and that in the thin filament the segment containing this residue moves away slightly from the hydrophobic patch in the absence of Ca2+, possibly triggering the translocation of the actin-binding region(s) of TnI toward actin.
机译:已经提出了[Herzberg等。 (1986)生物化学杂志。化学261,2638-2644],并通过结构研究证实[Gagne等。 (1995)Nat。结构。生物学[2,784-789],认为Ca2 +与肌钙蛋白C(TnC)中的触发位点的结合会导致由B,C和D螺旋束缚的N端疏水口袋的打开。据信这种构象变化为肌钙蛋白-I(TnI)提供了额外的结合位点,并导致Ca 2+调节过程中的进一步事件。为了回答TnI的哪一部分与TnC的疏水部分相互作用的问题,我们构建了两个TnC突变体,每个突变体都带有一个半胱氨酸,一个位于螺旋B和C之间的第48位残基,另一个位于D螺旋上的第82位残基上。用光可活化的交联剂二苯甲酮-4-碘乙酰胺标记每个突变体,然后进行重构和UV照射。研究了由TnC和TnI组成的二元复合物,由TnC,TnI和肌钙蛋白T(TnT)组成的三元复合物以及由肌钙蛋白,原肌球蛋白和F-肌动蛋白组成的合成细丝。对于两种突变体和所有三种类型的复合物都观察到了TnC-TnI光交联。尽管在二元和三元络合物上未观察到光交联中的Ca2 +依赖性,但是在细丝中不存在Ca2 +的情况下,交联的程度降低了。 TnI Met121,来自抑制区C端的5个残基,在蛋白水解后使用微测序和质谱法鉴定为TnC突变体的交联位点。用完整的TnC.TnI复合物获得的这些结果表明,含有Met121的TnI片段与TnC的N端疏水性贴片紧密接触,而在细丝中,含有该残基的片段则略微远离疏水性贴片。在不存在Ca2 +的情况下,可能触发TnI的肌动蛋白结合区向肌动蛋白的易位。

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