首页> 美国卫生研究院文献>The Journal of Biological Chemistry >A Conserved Non-canonical Motif in the Pseudoactive Site of the ROP5 Pseudokinase Domain Mediates Its Effect on Toxoplasma Virulence
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A Conserved Non-canonical Motif in the Pseudoactive Site of the ROP5 Pseudokinase Domain Mediates Its Effect on Toxoplasma Virulence

机译:ROP5假激酶结构域的假活性位点中的保守的非经典母题介导其对弓形体毒力的影响。

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摘要

The ROP5 family is a closely related set of polymorphic pseudokinases that are critical to the ability of Toxoplasma to cause disease. Polymorphisms in ROP5 also make it a major determinant of strain-specific differences in virulence. ROP5 possesses all of the major kinase motifs required for catalysis except for a substitution at the catalytic Asp. We show that this substitution in the catalytic loop of ROP5 is part of a motif conserved in other pseudokinases of both Toxoplasma and human origin, and that this motif is required for the full activity in vivo of ROP5. This suggests evolutionary selection at this site for a biochemical function, rather than simple drift away from catalysis. We present the crystal structures of a virulent isoform of ROP5 both in its ATP-bound and -unbound states and have demonstrated that despite maintaining the canonical ATP-binding motifs, ROP5 binds ATP in a distorted conformation mediated by unusual magnesium coordination sites that would not be predicted from the primary sequence. In addition, we have mapped the polymorphisms spread throughout the primary sequence of ROP5 to two major surfaces, including the activation segment of ROP5. This suggests that the pseudoactive site of this class of pseudokinases may have evolved to use the canonical ATP-binding motifs for non-catalytic signaling through allostery.
机译:ROP5家族是一组紧密相关的多态性假激酶,对弓形虫引起疾病的能力至关重要。 ROP5中的多态性也使其成为毒力菌株特异性差异的主要决定因素。 ROP5具有催化所需的所有主要激酶基序,除了催化Asp处的取代。我们表明,在ROP5的催化环中的这种取代是在弓形虫和人类起源的其他假激酶中保守的基序的一部分,并且该基序是ROP5在体内的全部活性所必需的。这表明在该位点的进化选择是为了生化功能,而不是简单地远离催化作用。我们介绍了ROP5的强毒同工型在其ATP结合状态和-未结合状态下的晶体结构,并已证明尽管维持了经典的ATP结合基序,但ROP5仍以不常见的镁配位点介导的扭曲构象结合了ATP从主序列预测。此外,我们已经将分布在整个ROP5主序列中的多态性映射到两个主要表面,包括ROP5的激活片段。这表明这类伪激酶的伪活性位点可能已经进化为使用经典的ATP结合基序用于通过变构的非催化信号传导。

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