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转羧酶载脂蛋白1.3S亚基中Met-88和Met-90位点的突变对Lys-89生物素化的影响。

Effect of mutations at Met-88 and Met-90 on the biotination of Lys-89 of the apo 1.3S subunit of transcarboxylase.

作者信息

Shenoy B C, Paranjape S, Murtif V L, Kumar G K, Samols D, Wood H G

机构信息

Department of Biochemistry, Case Western Reserve University, Cleveland, Ohio 44106.

出版信息

FASEB J. 1988 Jun;2(9):2505-11. doi: 10.1096/fasebj.2.9.3131174.

Abstract

The apo 1.3S subunit of transcarboxylase contains the sequence Ala-87-Met-88-Lys-89-Met-90, and it is Lys-89 that is biotinated. This sequence is highly conserved in all the biotin enzymes that have been sequenced (with the exception of acetyl-CoA carboxylase from chicken liver, which has Val in place of Ala). The role of Met-88 and Met-90 in specifying Lys-89 for biotination by synthetase was examined by site-directed mutagenesis. Genes of the 1.3S subunit coding for Thr-88, Leu-88, or Leu-90 were generated by oligonucleotide-directed in vitro mutagenesis and expressed in Escherichia coli. The mutated apo 1.3S subunits were isolated and the biotination by homogeneous synthetase from Propionibacterium shermanii was compared with that of the apo wild-type subunit. The Vmax for the apo mutants was the same as that for the apo wild type, but when Leu was substituted for Met-88 or Met-90, the Km for the mutant was lower than that of the wild-type or mutant Thr-88. The activity of the synthetase of E. coli was determined by an in vivo assay. During the early log phase of growth, a smaller portion of mutants Thr-88 and Leu-90 was biotinated than with the wild-type or mutant Leu-88. When the cultures progressed to stationary phase, mutants and the wild type were biotinated to the same extent. The overall results show that Met-88 and Met-90 are not required for biotination of the apo 1.3S subunit by the synthetases.

摘要

转羧酶的载脂蛋白1.3S亚基包含序列Ala-87-Met-88-Lys-89-Met-90,且被生物素化的是Lys-89。在所有已测序的生物素酶中,该序列高度保守(鸡肝中的乙酰辅酶A羧化酶除外,其第87位为Val而非Ala)。通过定点诱变研究了Met-88和Met-90在合成酶将Lys-89指定为生物素化位点方面的作用。通过寡核苷酸定向体外诱变产生编码Thr-88、Leu-88或Leu-90的1.3S亚基基因,并在大肠杆菌中表达。分离出突变的载脂蛋白1.3S亚基,并将来自谢氏丙酸杆菌的同源合成酶对其进行生物素化的情况与载脂蛋白野生型亚基的情况进行比较。载脂蛋白突变体的Vmax与载脂蛋白野生型相同,但当用Leu取代Met-88或Met-90时,突变体的Km低于野生型或Thr-88突变体。通过体内测定法测定大肠杆菌合成酶的活性。在生长的对数早期阶段,Thr-88和Leu-90突变体被生物素化部分比野生型或Leu-88突变体小。当培养物进入稳定期时,突变体和野生型被生物素化的程度相同。总体结果表明,合成酶对载脂蛋白1.3S亚基进行生物素化不需要Met-88和Met-90。

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