Wood T D, Guan Z, Borders C L, Chen L H, Kenyon G L, McLafferty F W
Department of Chemistry, Natural Sciences Complex, State University of New York, Buffalo, NY 14260-3000, USA.
Proc Natl Acad Sci U S A. 1998 Mar 31;95(7):3362-5. doi: 10.1073/pnas.95.7.3362.
Phenylglyoxal is an arginine-specific reagent that inactivates creatine kinase (CK). Previous results suggest that modification of the dimeric enzyme at a single arginine residue per subunit causes complete inactivation accompanied by the loss of nucleotide binding; the actual site of modification was not identified. Here, high-resolution tandem mass spectrometry (MS/MS) was used to identify three phenylglyoxal-modified Arg residues in monomeric rabbit muscle CK. Electrospray ionizaton Fourier-transform MS of the phenylglyoxal-modified CK that had lost approximately 80% activity identified three species: unmodified, once-modified (+116 Da), and twice-modified (+232 Da) enzyme in a ratio of approximately 1:4:1. MS/MS restricts the derivatized sites to P122-P212 and P283-V332, whereas MS of Lys-C digestions revealed two modified peptides, A266-K297 and G116-K137. The only Arg in A266-K297 is Arg-291 (invariant), whereas MS/MS of modified G116-K137 shows that two of the three sites Arg-129, Arg-131, or Arg-134 (all invariant) can contain the modification. The recently reported x-ray crystal structure for the octameric chicken mitochondrial CK indicates that its nucleotide triphosphate-binding site indeed contains the equivalent of R291, R129, and R131 reported here to be at the active site of rabbit muscle CK.
苯乙二醛是一种特异性作用于精氨酸的试剂,可使肌酸激酶(CK)失活。先前的研究结果表明,每个亚基的单个精氨酸残基被修饰会导致二聚体酶完全失活,并伴随着核苷酸结合能力的丧失;但修饰的实际位点尚未确定。在此,高分辨率串联质谱(MS/MS)被用于鉴定单体兔肌肉CK中三个被苯乙二醛修饰的精氨酸残基。对活性丧失约80%的苯乙二醛修饰的CK进行电喷雾电离傅里叶变换质谱分析,确定了三种形式:未修饰的、一次修饰的(+116 Da)和二次修饰的(+232 Da)酶,其比例约为1:4:1。MS/MS将衍生化位点限定在P122 - P212和P283 - V332区域,而对赖氨酸 - C消化产物的质谱分析揭示了两个被修饰的肽段,A266 - K297和G116 - K137。A266 - K297中唯一的精氨酸是Arg - 291(保守),而对修饰后的G116 - K137进行MS/MS分析表明,三个位点Arg - 129、Arg - 131或Arg - 134(均为保守)中的两个可能含有修饰。最近报道的八聚体鸡线粒体CK的X射线晶体结构表明,其核苷酸三磷酸结合位点确实含有与本文报道的兔肌肉CK活性位点处的R291、R129和R131相当的残基。