Fernández César, Hilty Christian, Wider Gerhard, Güntert Peter, Wüthrich Kurt
Institut für Molekularbiologie und Biophysik, Eidgenössische Technische Hochschule Zürich CH-8093 Zürich, Switzerland.
J Mol Biol. 2004 Mar 5;336(5):1211-21. doi: 10.1016/j.jmb.2003.09.014.
The structure of the integral membrane protein OmpX from Escherichia coli reconstituted in 60 kDa DHPC micelles (OmpX/DHPC) was calculated from 526 NOE upper limit distance constraints. The structure determination was based on complete sequence-specific assignments for the amide protons and the Val, Leu, and Ile(delta1) methyl groups in OmpX, which were selectively protonated on a perdeuterated background. The solution structure of OmpX in the DHPC micelles consists of a well-defined, eight-stranded antiparallel beta-barrel, with successive pairs of beta-strands connected by mobile loops. Several long-range NOEs observed outside of the transmembrane barrel characterize an extension of a four-stranded beta-sheet beyond the height of the barrel. This protruding beta-sheet is believed to be involved in intermolecular interactions responsible for the biological functions of OmpX. The present approach for de novo structure determination should be quite widely applicable to membrane proteins reconstituted in mixed micelles with overall molecular masses up to about 100 kDa, and may also provide a platform for additional functional studies.
通过526个NOE上限距离约束条件计算出了在60 kDa二己酰磷脂酰胆碱(DHPC)胶束中重构的大肠杆菌整合膜蛋白OmpX的结构(OmpX/DHPC)。结构测定基于对OmpX中酰胺质子以及缬氨酸、亮氨酸和异亮氨酸(δ1)甲基的完整序列特异性归属,这些在全氘代背景下被选择性质子化。DHPC胶束中OmpX的溶液结构由一个明确的八链反平行β桶组成,连续的β链对由可移动的环连接。在跨膜桶外部观察到的几个长程NOE表征了一个四链β折叠在桶高度之外的延伸。这个突出的β折叠被认为参与了负责OmpX生物学功能的分子间相互作用。目前这种从头进行结构测定的方法应该广泛适用于在总分子量高达约100 kDa的混合胶束中重构的膜蛋白,并且还可能为进一步的功能研究提供一个平台。