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胱硫醚β-合酶(CBS)结构域赋予II类焦磷酸酶多种形式的Mg2+依赖性协同作用。

Cystathionine β-synthase (CBS) domains confer multiple forms of Mg2+-dependent cooperativity to family II pyrophosphatases.

作者信息

Salminen Anu, Anashkin Viktor A, Lahti Matti, Tuominen Heidi K, Lahti Reijo, Baykov Alexander A

机构信息

Department of Biochemistry, University of Turku, FIN-20014 Turku, Finland and.

Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Moscow 119899, Russia.

出版信息

J Biol Chem. 2014 Aug 15;289(33):22865-22876. doi: 10.1074/jbc.M114.589473. Epub 2014 Jul 1.

Abstract

Regulated family II pyrophosphatases (CBS-PPases) contain a nucleotide-binding insert comprising a pair of cystathionine β-synthase (CBS) domains, termed a Bateman module. By binding with high affinity to the CBS domains, AMP and ADP usually inhibit the enzyme, whereas ATP activates it. Here, we demonstrate that AMP, ADP, and ATP bind in a positively cooperative manner to CBS-PPases from four bacteria: Desulfitobacterium hafniense, Clostridium novyi, Clostridium perfringens, and Eggerthella lenta. Enzyme interaction with substrate as characterized by the Michaelis constant (Km) also exhibited positive catalytic cooperativity that decreased in magnitude upon nucleotide binding. The degree of both types of cooperativity increased with increasing concentration of the cofactor Mg(2+) except for the C. novyi PPase where Mg(2+) produced the opposite effect on kinetic cooperativity. Further exceptions from these general rules were ADP binding to C. novyi PPase and AMP binding to E. lenta PPase, neither of which had any effect on activity. A genetically engineered deletion variant of D. hafniense PPase lacking the regulatory insert was fully active but differed from the wild-type enzyme in that it was insensitive to nucleotides and bound substrate non-cooperatively and with a smaller Km value. These results indicate that the regulatory insert acts as an internal inhibitor and confers dual positive cooperativity to CBS domain-containing PPases, making them highly sensitive regulators of the PPi level in response to the changes in cell energy status that control adenine nucleotide distribution. These regulatory features may be common among other CBS domain-containing proteins.

摘要

受调控的II型焦磷酸酶(CBS-PPases)含有一个核苷酸结合插入序列,该序列由一对胱硫醚β-合酶(CBS)结构域组成,称为贝特曼模块。AMP和ADP通常以高亲和力与CBS结构域结合,从而抑制该酶,而ATP则激活它。在此,我们证明,AMP、ADP和ATP以正协同方式结合到来自四种细菌的CBS-PPases上,这四种细菌分别是哈氏脱硫肠状菌、诺维氏梭菌、产气荚膜梭菌和迟缓埃格特菌。以米氏常数(Km)表征的酶与底物的相互作用也表现出正催化协同性,这种协同性在核苷酸结合后幅度降低。除了诺维氏梭菌PPase外,两种协同性的程度都随着辅因子Mg(2+)浓度的增加而增加,在诺维氏梭菌PPase中,Mg(2+)对动力学协同性产生相反的影响。这些一般规律的进一步例外情况是ADP与诺维氏梭菌PPase的结合以及AMP与迟缓埃格特菌PPase的结合,这两种结合对活性均无任何影响。哈氏脱硫肠状菌PPase的一个缺乏调控插入序列的基因工程缺失变体具有完全活性,但与野生型酶不同的是,它对核苷酸不敏感,以非协同方式结合底物且Km值较小。这些结果表明,调控插入序列作为一种内部抑制剂,赋予含CBS结构域的PPases双重正协同性,使其成为响应控制腺嘌呤核苷酸分布的细胞能量状态变化的PPi水平的高度敏感调节剂。这些调控特征可能在其他含CBS结构域的蛋白质中很常见。

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