florida state university
IMB Home > XRF Home | Soma's Home > Solved Structures > Azzi 2004 >

XRF Publications

» Related Links

Our Facility»

Contact Info

What's New

Site Map

Solved Structures

XRF Resources»

Facility Users

X-Ray Schedules»

WWW Resources

Emergency Info

Soma's Home»

IMB»

FSU»



westcott building
 
«Previous | Next»

Protein Sci. 2004 Mar;13(3):575-85.

[DOI Link]

The role phosphagen specificity loops in arginine kinase.

Azzi A, Clark SA, Ellington WR, Chapman MS.

Kasha Laboratory, Institute of Molecular Biophysics and Department of Chemistry and Biochemistry, and Department of Biological Sciences, Florida State University, Tallahassee, Florida 32306-4380, USA.

Phosphagen kinases catalyze the reversible transfer of a phosphate between ATP and guanidino substrates, a reaction that is central to cellular energy homeostasis. Members of this conserved family include creatine and arginine kinases and have similar reaction mechanisms, but they have distinct specificities for different guanidino substrates. There has not been a full structural rationalization of specificity, but two loops have been implicated repeatedly. A small domain loop is of length that complements the size of the guanidino substrate, and is located where it could mediate a lock-and-key mechanism. The second loop contacts the substrate with a valine in the methyl-substituted guanidinium of creatine, and with a glutamate in the unsubstituted arginine substrate, leading to the proposal of a discriminating hydrophobic/hydrophilic minipocket. In the present work, chimeric mutants were constructed with creatine kinase loop elements inserted into arginine kinase. Contrary to the prior rationalizations of specificity, most had measurable arginine kinase activity but no creatine kinase activity or enhanced phosphocreatine binding. Guided by structure, additional mutations were introduced in each loop, recovering arginine kinase activities as high as 15% and 64% of wild type, respectively, even though little activity would be expected in the constructs if the implicated sites had dominant roles in specificity. An atomic structure of the mismatched complex of arginine kinase with creatine and ADP indicates that specificity can also be mediated by an active site that allows substrate prealignment that is optimal for reactivity only with cognate substrates and not with close homologs that bind but do not react.

PMID: 14978299 [PubMed - indexed for MEDLINE]

This publication is one of the several that describes a structure solved either at the Kasha Laboratory, Institute of Molecular Biophysics or in collaboration with the Institute Faculty. The data used for this structure determination came in full or part from the Macromolecular X-Ray Crystallography Facility.

FSU | IMB | XRF | Soma's Home |
© 2003-2007 Thayumanasamy Somasundaram
www.sb.fsu.edu/~xray/Pubs/04azzi.html
florida state university