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1,5-二磷酸核酮糖羧化酶/加氧酶(Rubisco)的激活涉及Rubisco活化酶的色氨酸16。

Activation of ribulose-1,5-biphosphate carboxylase/oxygenase (Rubisco) involves Rubisco activase Trp16.

作者信息

van de Loo F J, Salvucci M E

机构信息

United States Department of Agriculture, Agricultural Research Service, Western Cotton Research Laboratory, Phoenix, Arizona 85040-8830, USA.

出版信息

Biochemistry. 1996 Jun 25;35(25):8143-8. doi: 10.1021/bi9604901.

Abstract

The role of the N-terminal region of tobacco Rubisco activase in ATP hydrolysis and ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco) activation was examined by construction of mutant proteins. Deletion of the first 50 amino acids of Rubisco activase almost completely eliminated the ability to activate Rubisco, without changing the ATP-hydrolyzing and self-associating properties of the enzyme. Thus, the N-terminus of Rubisco activase is distinct from the ATP-hydrolyzing domain and is required for Rubisco activation. Directed mutagenesis of the species-invariant tryptophan residue at position 16 inhibited Rubisco activation but not the binding or hydrolysis of ATP. The ability to activate Rubisco was less severely inhibited when Trp was replaced by a Tyr or Phe than by an Ala or Cys, indicating that an aromatic residue at position 16 and particularly a Trp is required for proper activation of Rubisco. Fluorescence quenching of the 7-nitrobenz-2-oxa-1,3-diazole-modified W16C mutant upon addition of nucleotide suggested that position 16 becomes more solvent accessible in response to nucleotide binding. However, changes in the intrinsic fluorescence of truncated and Trp16 mutants upon addition of ATP were similar to those of the wild type, evidence that Trp16 is not the residue reporting the conformational change that accompanies subunit association.

摘要

通过构建突变蛋白,研究了烟草核酮糖-1,5-二磷酸羧化酶/加氧酶(Rubisco)活化酶N端区域在ATP水解和Rubisco活化中的作用。Rubisco活化酶前50个氨基酸的缺失几乎完全消除了其激活Rubisco的能力,而酶的ATP水解和自我缔合特性未发生改变。因此,Rubisco活化酶的N端与ATP水解结构域不同,是Rubisco活化所必需的。对第16位物种保守的色氨酸残基进行定点诱变抑制了Rubisco的活化,但不影响ATP的结合或水解。当色氨酸被酪氨酸或苯丙氨酸取代时,激活Rubisco的能力受到的抑制比被丙氨酸或半胱氨酸取代时要小,这表明第16位的芳香族残基,尤其是色氨酸,是Rubisco正确活化所必需的。添加核苷酸后,7-硝基苯并-2-恶唑-1,3-二唑修饰的W16C突变体的荧光猝灭表明,第16位在核苷酸结合后变得更易被溶剂接近。然而,添加ATP后,截短突变体和Trp16突变体的固有荧光变化与野生型相似,这证明Trp16不是报告亚基缔合伴随的构象变化的残基。

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