S. Kocabivik et Mh. Perlin, AMINO-ACID SUBSTITUTIONS WITHIN THE ANALOGOUS NUCLEOTIDE-BINDING LOOP(P-LOOP) OF AMINOGLYCOSIDE 3'-PHOSPHOTRANSFERASE-II, International Journal of Biochemistry, 26(1), 1994, pp. 61-66
1. Oligonucleotide-directed mutagenesis of APH(3')-II was used to inve
stigate the functions of key amino acids in the P-loop analogous motif
of the enzyme. 2. The mutations of Gly205 --> GIu, Gly210 --> Ala and
Arg211 --> Pro considerably reduced the resistance of the resulting s
trains to KM and to related drugs, e.g. G418. 3. Similarly, enzyme act
ivity in the crude extracts of these mutants was substantially reduced
as well as the enzyme's affinity for Mg2+ ATP. 4. Alternatively subst
itutions at a highly conserved basic residue (Arg211 --> Lys and Arg21
1 --> His) were not sufficient for the enzyme to sustain the activity
at a level comparable to that of the wildtype. 5. Moreover, an Arg211
--> His mutation drastically reduced affinity of the enzyme for Mg2+ A
TP. 6. This argues the importance of Arg211 residue in contributing to
the formation of the P-loop structure in addition to its involvement
in phosphoryl transfer reaction. 7. Computer analysis of the secondary
structure predicted that the APH(3')-II loop connects a beta-strand t
o an alpha-helix and that the above mutations caused varying degrees o
f structural distortions at the corresponding regions of the protein.