Song Jikui, Zhao Kate Qin, Newman Carrie L Loushin, Vinarov Dmitriy A, Markley John L
Center for Eukaryotic Structural Genomics, Department of Biochemistry, University of Wisconsin-Madison, Madison, Wisconsin 53706-1544, USA.
Protein Sci. 2007 May;16(5):807-14. doi: 10.1110/ps.072752407. Epub 2007 Mar 30.
The sorting nexins (SNXs) constitute a large group of PX domain-containing proteins that play critical roles in protein trafficking. We report here the solution structure of human sorting nexin 22 (SNX22). Although SNX22 has <30% sequence identity with any PX domain protein of known structure, it was found to contain the alpha/beta fold and compact structural core characteristic of PX domains. Analysis of the backbone dynamics of SNX22 by NMR relaxation measurements revealed that the two walls of the ligand binding cleft undergo internal motions: on the picosecond timescale for the beta1/beta2 loop and on the micro- to millisecond timescale for the loop between the polyproline motif and helix alpha2. Regions of the SNX22 structure that differ from those of other PX domains include the loop connecting strands beta1 and beta2 and the loop connecting helices alpha1 and alpha2, which appear to be more mobile than corresponding loops in other known structures. The interaction of dibutanoyl-phosphatidylinositol-3-phosphate (dibutanoyl-PtdIns(3)P) with SNX22 was investigated by an NMR titration experiment, which identified the binding site in a basic cleft and indicated that ligand binding leads only to a local structural rearrangement as has been found with other PX domains. Because motions in the loops are damped out when dibutanoyl-PtdIns(3)P binds, entropic effects could contribute to the lower affinity of SNX22 for this ligand compared to other PX domains.
分选连接蛋白(SNXs)构成了一大类含PX结构域的蛋白质,它们在蛋白质运输中发挥着关键作用。我们在此报告人分选连接蛋白22(SNX22)的溶液结构。尽管SNX22与任何已知结构的PX结构域蛋白的序列同一性均小于30%,但发现它含有PX结构域特有的α/β折叠和紧密结构核心。通过核磁共振弛豫测量对SNX22的主链动力学进行分析,结果表明配体结合裂隙的两壁会发生内部运动:β1/β2环在皮秒时间尺度上运动,多聚脯氨酸基序与α2螺旋之间的环在微秒至毫秒时间尺度上运动。SNX22结构中与其他PX结构域不同的区域包括连接β1和β2链的环以及连接α1和α2螺旋的环,这些环似乎比其他已知结构中的相应环更具流动性。通过核磁共振滴定实验研究了二丁酰磷脂酰肌醇-3-磷酸(二丁酰-PtdIns(3)P)与SNX22的相互作用,该实验确定了碱性裂隙中的结合位点,并表明配体结合只会导致局部结构重排,这与其他PX结构域的情况相同。由于二丁酰-PtdIns(3)P结合时环中的运动会受到抑制,与其他PX结构域相比,熵效应可能导致SNX22对该配体的亲和力较低。