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卤虫血红蛋白II的四级结构:T和C聚合物排列及聚合物间界面分析

Quaternary structure of Artemia haemoglobin II: analysis of T and C polymer alignment and interpolymer interface.

作者信息

Chyou David T, Rawle Vincent L, Trotman Clive N A

机构信息

Department of Biochemistry, University of Otago, Dunedin, New Zealand.

出版信息

BMC Struct Biol. 2007 Apr 18;7:26. doi: 10.1186/1472-6807-7-26.

Abstract

BACKGROUND

The brine shrimp Artemia expresses four different types of haemoglobin subunits namely C1, C2, T1 and T2. Two of these four subunits dimerize in different combinations to produce the three isoforms of the heterodimeric Artemia haemoglobin: HbI (C1 and C2), HbII (C1 and T2) and HbIII (T1 and T2). Previous biochemical, biophysical and computational analyses demonstrate that the T and C polymers are rings of nine concatenated globin domains, which are covalently joined by interdomain linkers. Two such rings stacked coaxially give the functional molecule. This research aimed to construct a quaternary structural model of Artemia HbII that shows the interpolymer interface and domain-domain alignment, using the MS3D (mass spectrometry for three dimensional analysis) approach. This involved introducing chemical crosslinks between the two polymers, cleaving with trypsin and analyzing the resulting products by mass spectrometry. This was followed by computational analysis of the mass spectrometry data using the program SearchXlinks to identify putatively crosslinked peptides.

RESULTS

Six putative EGS (ethylene glycol bis [succinimidylsuccinate]) crosslinked tryptic peptides were identified. All of them support a model in which the EF helices of all domains are in contact along the interpolymer surface, and Domain 1 of the T-polymer aligns with Domain 1 of the C-polymer. Any two adjacent interpolymer domain pairs contact through the early Helix H and early Helix A. The orientation of domains is different from the subunit proposed model proposed previously by this group. Crosslinking with GMBS (N- [gamma-maleimidobutyryloxy]succinimide ester) was also performed, and the results show good agreement with this model.

CONCLUSION

The interpolymer EF-contact allows the hydrophobic E and F helices to be buried in the interface and therefore allow the complex to solubilize readily to facilitate efficient oxygen transport. Furthermore the EF-contact is a common contact in cooperative haemoglobins and thus the model is consistent with the cooperative behaviour of Artemia HbII.

摘要

背景

卤虫表达四种不同类型的血红蛋白亚基,即C1、C2、T1和T2。这四个亚基中的两个以不同组合二聚化,产生异源二聚体卤虫血红蛋白的三种同工型:HbI(C1和C2)、HbII(C1和T2)和HbIII(T1和T2)。先前的生化、生物物理和计算分析表明,T和C聚合物是由九个串联的球蛋白结构域组成的环,这些结构域通过结构域间连接子共价连接。两个这样的环同轴堆叠形成功能分子。本研究旨在使用MS3D(三维分析质谱法)方法构建卤虫HbII的四级结构模型,该模型显示聚合物间界面和结构域-结构域排列。这涉及在两种聚合物之间引入化学交联,用胰蛋白酶切割并用质谱法分析所得产物。随后使用SearchXlinks程序对质谱数据进行计算分析,以识别推定的交联肽段。

结果

鉴定出六个推定的EGS(乙二醇双[琥珀酰亚胺琥珀酸酯])交联胰蛋白酶肽段。所有这些肽段都支持这样一个模型,即所有结构域的EF螺旋沿着聚合物间表面接触,并且T聚合物的结构域1与C聚合物的结构域1对齐。任何两个相邻的聚合物间结构域对通过早期螺旋H和早期螺旋A接触。结构域的取向与该研究小组先前提出的亚基模型不同。还进行了与GMBS(N-[γ-马来酰亚胺丁酰氧基]琥珀酰亚胺酯)的交联,结果与该模型吻合良好。

结论

聚合物间的EF接触使得疏水的E和F螺旋能够埋入界面,从而使复合物易于溶解,以促进有效的氧气运输。此外,EF接触是协同血红蛋白中的常见接触,因此该模型与卤虫HbII的协同行为一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66eb/1865544/435a00fcf753/1472-6807-7-26-1.jpg

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