Sack J S, Saper M A, Quiocho F A
Howard Hughes Medical Institute, Department of Biochemistry, Baylor College of Medicine, Houston, TX 77030.
J Mol Biol. 1989 Mar 5;206(1):171-91. doi: 10.1016/0022-2836(89)90531-7.
The three-dimensional structure of the native unliganded form of the Leu/Ile/Val-binding protein (Mr = 36,700), an essential component of the high-affinity active transport system for the branched aliphatic amino acids in Escherichia coli, has been determined and further refined to a crystallographic R-factor of 0.17 at 2.4 A resolution. The entire structure consists of 2710 non-hydrogen atoms from the complete sequence of 344 residues and 121 ordered water molecules. Bond lengths and angle distances in the refined model have root-mean-square deviations from ideal values of 0.05 A and 0.10 A, respectively. The overall shape of the protein is a prolate ellipsoid with dimensions of 35 A x 40 A x 70 A. The protein consists of two distinct globular domains linked by three short peptide segments which, though widely separated in the sequence, are proximal in the tertiary structure and form the base of the deep cleft between the two domains. Although each domain is built from polypeptide segments located in both the amino (N) and the carboxy (C) terminal halves, both domains exhibit very similar supersecondary structures, consisting of a central beta-sheet of seven strands flanked on either side by two or three helices. The two domains are far apart from each other, leaving the cleft wide open by about 18 A. The cleft has a depth of about 15 A and a base of about 14 A x 16 A. Refining independently the structure of native Leu/Ile/Val-binding protein crystals soaked in a solution containing L-leucine at 2.8 A resolution (R-factor = 0.15), we have been able to locate and characterize an initial, major portion of the substrate-binding site of the Leu/Ile/Val-binding protein. The binding of the L-leucine substrate does not alter the native crystal structure, and the L-leucine is lodged in a crevice on the wall of the N-domain, which is in the inter-domain cleft. The L-leucine is held in place primarily by hydrogen-bonding of its alpha-ammonium and alpha-carboxylate groups with main-chain peptide units and hydroxyl side-chain groups; there are no salt-linkages. The charges on the leucine zwitterion are stabilized by hydrogen-bond dipoles. The side-chain of the L-leucine substrate lies in a depression lined with non-polar residues, including Leu77, which confers specificity to the site by stacking with the side-chain of the leucine substrate.(ABSTRACT TRUNCATED AT 400 WORDS)
亮氨酸/异亮氨酸/缬氨酸结合蛋白(Mr = 36,700)的天然无配体形式的三维结构已被确定,该蛋白是大肠杆菌中支链脂肪族氨基酸高亲和力主动运输系统的重要组成部分,并在2.4 Å分辨率下进一步精修至晶体学R因子为0.17。整个结构由来自344个残基完整序列的2710个非氢原子和121个有序水分子组成。精修模型中的键长和角度距离与理想值的均方根偏差分别为0.05 Å和0.10 Å。该蛋白的整体形状是一个长轴椭球体,尺寸为35 Å×40 Å×70 Å。该蛋白由两个不同的球状结构域通过三个短肽段相连,这三个短肽段在序列中相隔很远,但在三级结构中彼此靠近,形成了两个结构域之间深裂缝的底部。尽管每个结构域都由位于氨基(N)端和羧基(C)端两半的多肽段构成,但两个结构域都呈现出非常相似的超二级结构,由一个由七条链组成的中央β折叠片层组成,两侧各有两个或三个螺旋。两个结构域彼此相距很远,使裂缝宽约18 Å。裂缝深度约为15 Å,底部约为14 Å×16 Å。在2.8 Å分辨率(R因子 = 0.15)下独立精修浸泡在含有L-亮氨酸溶液中的天然亮氨酸/异亮氨酸/缬氨酸结合蛋白晶体的结构后,我们得以定位并表征亮氨酸/异亮氨酸/缬氨酸结合蛋白底物结合位点的初始主要部分。L-亮氨酸底物的结合并未改变天然晶体结构,L-亮氨酸位于N结构域壁上的一个裂缝中,该裂缝位于两个结构域之间的裂缝处。L-亮氨酸主要通过其α-铵基和α-羧基与主链肽单元和羟基侧链基团形成氢键而固定在原位;不存在盐键。亮氨酸两性离子上的电荷通过氢键偶极得以稳定。L-亮氨酸底物的侧链位于一个由非极性残基排列的凹陷处,包括Leu77,它通过与亮氨酸底物的侧链堆积赋予该位点特异性。(摘要截短于400字)