Marathias Vasilios M, Goljer Igor, Bach Alvin C
Wyeth Research, Discovery Analytical Chemistry, CN 8000, Princeton, New Jersey 08543-8000, USA.
Magn Reson Chem. 2005 Jul;43(7):512-9. doi: 10.1002/mrc.1597.
A high-resolution, phase-sensitive, natural abundance F2-coupled 1H-13C HSQC (F2HSQC) NMR experiment was developed to measure simultaneously both (n)D(HH) and 1D(CH) residual dipolar couplings (RDCs) of small molecules present in a chiral polypeptide liquid crystal solvent system composed of poly-gamma-benzyl-L-glutamate (PBLG) in CDCl3. Because this is an indirect-detection NMR experiment, the relatively small amount of sample (7.5 mg in this study) and short acquisition times (5 h) that are required make this HSQC experiment well suited for samples that are either limited in solubility or in quantity or require short analysis times. The F2HSQC experiment can be performed without any specialized equipment or sample modification and can enhance our ability to measure RDCs accurately and rapidly in polypeptide liquid crystal solvents.
开发了一种高分辨率、相敏、天然丰度F2耦合的1H-13C HSQC(F2HSQC)核磁共振实验,用于同时测量存在于由聚-γ-苄基-L-谷氨酸(PBLG)在CDCl3中组成的手性多肽液晶溶剂体系中的小分子的(n)D(HH)和1D(CH)剩余偶极耦合(RDC)。由于这是一个间接检测核磁共振实验,所需的相对少量样品(本研究中为7.5毫克)和较短采集时间(5小时)使得该HSQC实验非常适合溶解度或数量有限或需要短分析时间的样品。F2HSQC实验无需任何专门设备或样品改性即可进行,并且可以提高我们在多肽液晶溶剂中准确快速测量RDC的能力。