Poon David K Y, Schubert Mario, Au Jason, Okon Mark, Withers Stephen G, McIntosh Lawrence P
Department of Biochemistry and Molecular Biology, The Protein Engineering Network of Centres of Excellence, and The Michael Smith Laboratories, University of British Columbia, Vancouver, British Columbia, Canada V6T 1Z3.
J Am Chem Soc. 2006 Dec 6;128(48):15388-9. doi: 10.1021/ja065766z.
We have investigated the lysine side chain amines in the 34 kDa catalytic domain from Cellulomonas fimi beta-(1,4)-glycosidase Cex (or CfXyn10A) using 1H-detected 15N heteronuclear correlation NMR spectroscopy. Signals from the 1Hzeta ( approximately 8 ppm) and 15Nzeta ( approximately 35 ppm) of Lys302 in the unmodified enzyme and Lys47 in a trapped cellobiosyl-enzyme intermediate were detected in a 1H-15N HMQC spectrum (pH 6.5 and 30 degrees C). The amine of Lys302 forms a buried ion pair, and that of Lys47 is hydrogen bonded to the cellobioside. Both lysines are positively charged, as unambiguously demonstrated by the splitting of their 15Nzeta signals into quartets (|1JNH| approximately 75 Hz) in a 1H-15N HSQC spectrum recorded without 1H decoupling during 15N evolution. Qualitative insights into the dynamic properties of these lysines are also provided by the deviations of their quartet intensity ratios from that of approximately 3:1:1:3 expected for a highly mobile amine. On the basis of the observed ratios of approximately 1:1:1:1 for the quartet of Lys302 and approximately 0.5:1:1:0.5 for Lys47, the amine of the latter active site residue is most rigidly positioned. Signals from at least 8 and 10 additional positively charged, mobile amines in Cex were observed at 10 degrees C and pH 6.5 and 5.6, respectively. By using conditions of reduced temperature, slightly acidic pH, and low general base concentrations, as well as water flipback pulses to minimize the effects of hydrogen exchange, 1H-15N correlation experiments provide a sensitive route to directly investigate the charge states and dynamic properties of the N-terminal and side chain amines in proteins and protein complexes.
我们使用1H检测的15N异核相关核磁共振光谱,研究了纤维单胞菌β-(1,4)-糖苷酶Cex(或CfXyn10A)34 kDa催化结构域中的赖氨酸侧链胺。在1H-15N HMQC光谱(pH 6.5和30℃)中检测到未修饰酶中Lys302的1Hzeta(约8 ppm)和15Nzeta(约35 ppm)以及捕获的纤维二糖基酶中间体中Lys47的信号。Lys302的胺形成一个埋藏的离子对,而Lys47的胺与纤维二糖形成氢键。两个赖氨酸均带正电荷,这在15N演化期间未进行1H去耦的情况下记录的1H-15N HSQC光谱中,其15Nzeta信号分裂为四重峰(|1JNH|约75 Hz)得到了明确证明。这些赖氨酸四重峰强度比与高度移动胺预期的约3:1:1:3的偏差,也提供了对这些赖氨酸动态特性的定性见解。基于观察到的Lys302四重峰约1:1:1:1的比例以及Lys47约0.5:1:1:0.5的比例,后一个活性位点残基的胺定位最为刚性。分别在10℃、pH 6.5和pH 5.6条件下,在Cex中观察到至少8个和10个额外的带正电荷的移动胺的信号。通过使用降低温度、略酸性pH和低通用碱浓度的条件,以及水反转脉冲以最小化氢交换的影响,1H-15N相关实验提供了一条直接研究蛋白质和蛋白质复合物中N端和侧链胺的电荷状态及动态特性的灵敏途径。