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葡萄球菌核酸酶:序列指认与溶液结构

Staphylococcal nuclease: sequential assignments and solution structure.

作者信息

Torchia D A, Sparks S W, Bax A

机构信息

Bone Research Branch, National Institute of Dental Research, Bethesda, Maryland 20892.

出版信息

Biochemistry. 1989 Jun 27;28(13):5509-24. doi: 10.1021/bi00439a028.

Abstract

Sequential assignments are reported for backbone 15N and 1H of nearly all residues of staphylococcal nuclease (Nase) complexed with thymidine 3',5'-diphosphate and Ca2+. Because of the relatively large size of the Nase ternary complex, Mr 18K, the crucial element of our assignment strategy was the use of isotope-edited two-dimensional NMR spectra, particularly 15N-edited nuclear Overhauser enhancement spectroscopy (NOESY), 15N-edited J-correlated spectroscopy (COSY), and 1H/15N or 1H/13C heteronuclear multiple quantum shift correlation spectroscopy (HMQC). These experiments, together with the more conventional NOESY, COSY, and homonuclear Hartmann-Hahn spectra of natural abundance or deuteriated samples, yielded backbone assignments of 127 of the 136 residues in the structured part of the protein. Using the NOESY data, we identified three helical domains and several beta-sheets which were in close correspondence with secondary structure identified in the crystal structure. Moreover, many long-range NOESY connectivities were identified that were in agreement with distances derived from the crystal structure. The region of the sequence in the neighborhood of residue 50 appears to be more flexible and disordered in solution than in the crystal. Very slowly exchanging amide protons are those found to be hydrogen bonded in the crystal structure; however, even hydrogen-bonded amides located within similar types of regular secondary structures, e.g., alpha-helices, exchange with greatly different rates.

摘要

报道了与胸苷3',5'-二磷酸和Ca2+复合的葡萄球菌核酸酶(Nase)几乎所有残基的主链15N和1H的顺序归属。由于Nase三元复合物相对较大,分子量为18K,我们归属策略的关键要素是使用同位素编辑的二维NMR谱,特别是15N编辑的核Overhauser增强光谱(NOESY)、15N编辑的J相关光谱(COSY)以及1H/15N或1H/13C异核多量子位移相关光谱(HMQC)。这些实验,连同天然丰度或氘代样品更传统的NOESY、COSY和同核Hartmann-Hahn谱,给出了蛋白质结构部分136个残基中127个残基的主链归属。利用NOESY数据,我们确定了三个螺旋结构域和几个β折叠,它们与晶体结构中确定的二级结构密切对应。此外,还确定了许多长程NOESY连接,这与从晶体结构得出的距离一致。在溶液中,残基50附近的序列区域似乎比在晶体中更灵活且无序。发现非常缓慢交换的酰胺质子是那些在晶体结构中形成氢键的质子;然而,即使位于相似类型规则二级结构(例如α螺旋)内的氢键酰胺,其交换速率也有很大差异。

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