Biochemical and structural characterization of a novel arginine kinase from the spider Polybetes pythagoricus

Author:

Laino Aldana1,Lopez-Zavala Alonso A.2,Garcia-Orozco Karina D.3,Carrasco-Miranda Jesus S.3,Santana Marianela1,Stojanoff Vivian4,Sotelo-Mundo Rogerio R.3,Garcia Carlos Fernando1

Affiliation:

1. Instituto de Investigaciones Bioquímicas de La Plata “Dr. Prof. Rodolfo R. Brenner”, Universidad Nacional de La Plata, La Plata, Buenos Aires, Argentina

2. Departamento de Ciencias Químico-Biológicas, Universidad de Sonora, Hermosillo, Sonora, Mexico

3. Laboratorio de Estructura Biomolecular, Centro de Investigación en Alimentación y Desarrollo, A.C., Hermosillo, Sonora, Mexico

4. Photon Science Directorate, National Synchrotron Light Source II, Brookhaven National Laboratory, Upton, NY, United States of America

Abstract

Energy buffering systems are key for homeostasis during variations in energy supply. Spiders are the most important predators for insects and therefore key in terrestrial ecosystems. From biomedical interest, spiders are important for their venoms and as a source of potent allergens, such as arginine kinase (AK, EC 2.7.3.3). AK is an enzyme crucial for energy metabolism, keeping the pool of phosphagens in invertebrates, and also an allergen for humans. In this work, we studied AK from the Argentininan spider Polybetes pythagoricus (PpAK), from its complementary DNA to the crystal structure. The PpAK cDNA from muscle was cloned, and it is comprised of 1068 nucleotides that encode a 384-amino acids protein, similar to other invertebrate AKs. The apparent Michaelis-Menten kinetic constant (Km) was 1.7 mM with a kcat of 75 s−1. Two crystal structures are presented, the apoPvAK and PpAK bound to arginine, both in the open conformation with the active site lid (residues 310–320) completely disordered. The guanidino group binding site in the apo structure appears to be organized to accept the arginine substrate. Finally, these results contribute to knowledge of mechanistic details of the function of arginine kinase.

Funder

CONACYT (Mexico’s National Council for Science andTechnology) Binational Mexico-Argentina

CONICET (Argentina’s National Council for Scientific and Technical Research)

Agencia Nacional de Promoción Científica y Tecnológica

UNLP

CONACYT

NSLS-SSRL, LSBR, NSLSII and SMB, SSRL under NIH-NIGMS and DOE-BES and -BER

Publisher

PeerJ

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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3. Characterization and distribution of arginine kinase in the tissues of the scorpion, Palamneus phipsoni;Arjunwadkar;Canadian Journal of Zoology,1985

4. The role of phosphagen specificity loops in arginine kinase;Azzi;Protein Science,2004

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