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磷酸吡哆醛结合蛋白(PLPBP)的保守家族及其蓝藻范例PipY。

The Conserved Family of the Pyridoxal Phosphate-Binding Protein (PLPBP) and Its Cyanobacterial Paradigm PipY.

作者信息

Tremiño Lorena, Llop Antonio, Rubio Vicente, Contreras Asunción

机构信息

Dto. de Fisiología, Genética y Microbiología, Universidad de Alicante, 03690 San Vicente del Raspeig, Spain.

Instituto de Biomedicina de Valencia, Consejo Superior de Investigaciones Científicas (IBV-CSIC), 46010 Valencia, Spain.

出版信息

Life (Basel). 2022 Oct 17;12(10):1622. doi: 10.3390/life12101622.

Abstract

The PLPBP family of pyridoxal phosphate-binding proteins has a high degree of sequence conservation and is represented in all three domains of life. PLPBP members, of which a few representatives have been studied in different contexts, are single-domain proteins with no known enzymatic activity that exhibit the fold type III of PLP-holoenzymes, consisting in an α/β barrel (TIM-barrel), where the PLP cofactor is solvent-exposed. Despite the constant presence of cofactor PLP (a key catalytic element in PLP enzymes), PLPBP family members appear to have purely regulatory functions affecting the homeostasis of vitamin B vitamers and amino/keto acids. Perturbation of these metabolites and pleiotropic phenotypes have been reported in bacteria and zebrafish after gene inactivation as well as in patients with vitamin B-dependent epilepsy that results from loss-of-function mutations at the . Here, we review information gathered from diverse studies and biological systems, emphasizing the structural and functional conservation of the PLPBP members and discussing the informative nature of model systems and experimental approaches. In this context, the relatively high level of structural and functional characterization of PipY from PCC 7942 provides a unique opportunity to investigate the PLPBP roles in the context of a signaling pathway conserved in cyanobacteria.

摘要

磷酸吡哆醛结合蛋白(PLPBP)家族具有高度的序列保守性,在生命的三个域中均有代表。PLPBP家族成员是单结构域蛋白,没有已知的酶活性,具有PLP全酶的III型折叠,由α/β桶(TIM桶)组成,其中PLP辅因子暴露于溶剂中。尽管始终存在辅因子PLP(PLP酶中的关键催化元件),但PLPBP家族成员似乎仅具有调节功能,影响维生素B维生素异构体以及氨基酸/酮酸的稳态。在细菌和斑马鱼中,基因失活后以及在因功能丧失突变导致的维生素B依赖性癫痫患者中,均已报道了这些代谢物和多效性表型的扰动。在此,我们综述了从各种研究和生物系统中收集到的信息,强调了PLPBP家族成员的结构和功能保守性,并讨论了模型系统和实验方法的信息价值。在这种情况下,来自集胞藻PCC 7942的PipY相对较高水平的结构和功能表征为研究蓝细菌中保守信号通路背景下的PLPBP作用提供了独特的机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8bc3/9605639/80fc253c454c/life-12-01622-g001.jpg

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