A typical feature of type II restriction endonucleases (REases) is their obligate sequence specificity and requirement for Mg2+ during catalysis. R.KpnI is an exception. Unlike most other type II REases, the active site of this enzyme can accommodate Mg2+, Mn2+, Ca2+, or Zn2+ and cleave DNA. The enzyme belongs to the HNH superfamily of nucleases and is characterized by the presence of a beta beta alpha-Me finger motif. Residues D148, H149, and Q175 together form the HNH active site and are essential for Mg2+ binding and catalysis. The unique ability of the enzyme to cleave DNA in the presence of different metal ions is exploited to generate mutants that are specific to one particular metal ion. We describe the generation of a Mn2+-dependent...
Most of the restriction endonucleases (REases) are dependent on Mg2+ for DNA cleavage, and in genera...
KpnI REase recognizes palindromic sequence, $GGTAC\downarrow C$, and forms complex in the absence of...
AbstractA two-domain structure of the Type IIS restriction endonuclease MnlI has been identified by ...
A typical feature of type II restriction endonucleases (REases) is their obligate sequence specifici...
A majority of enzymes show a high degree of specificity toward a particular metal ion in their catal...
A majority of enzymes show a high degree of specificity toward a particular metal ion in their catal...
Restriction enzyme KpnI is a HNH superfamily endonuclease requiring divalent metal ions for DNA clea...
The characteristic feature of type II restriction endonucleases (REases) is their exquisite sequence...
The characteristic feature of type II restriction endonucleases (REases) is their exquisite sequence...
We describe two uncommon roles for Zn2+ in enzyme KpnI restriction endonuclease (REase). Among all o...
Restriction endonucleases of the PD...D/EXK family need Mg2+ for DNA cleavage. Whereas Mg2+ (or Mn2+...
We describe two uncommon roles for $Zn^{2+}$ in enzyme KpnI restriction endonuclease (REase). Among ...
KpnI REase recognizes palindromic sequence, GGTAC↓C, and forms complex in the absence of dival...
Bacteria employ survival strategies to protect themselves against foreign invaders, including bacter...
Most of the restriction endonucleases (REases) are dependent on Mg2+ for DNA cleavage, and in genera...
Most of the restriction endonucleases (REases) are dependent on Mg2+ for DNA cleavage, and in genera...
KpnI REase recognizes palindromic sequence, $GGTAC\downarrow C$, and forms complex in the absence of...
AbstractA two-domain structure of the Type IIS restriction endonuclease MnlI has been identified by ...
A typical feature of type II restriction endonucleases (REases) is their obligate sequence specifici...
A majority of enzymes show a high degree of specificity toward a particular metal ion in their catal...
A majority of enzymes show a high degree of specificity toward a particular metal ion in their catal...
Restriction enzyme KpnI is a HNH superfamily endonuclease requiring divalent metal ions for DNA clea...
The characteristic feature of type II restriction endonucleases (REases) is their exquisite sequence...
The characteristic feature of type II restriction endonucleases (REases) is their exquisite sequence...
We describe two uncommon roles for Zn2+ in enzyme KpnI restriction endonuclease (REase). Among all o...
Restriction endonucleases of the PD...D/EXK family need Mg2+ for DNA cleavage. Whereas Mg2+ (or Mn2+...
We describe two uncommon roles for $Zn^{2+}$ in enzyme KpnI restriction endonuclease (REase). Among ...
KpnI REase recognizes palindromic sequence, GGTAC↓C, and forms complex in the absence of dival...
Bacteria employ survival strategies to protect themselves against foreign invaders, including bacter...
Most of the restriction endonucleases (REases) are dependent on Mg2+ for DNA cleavage, and in genera...
Most of the restriction endonucleases (REases) are dependent on Mg2+ for DNA cleavage, and in genera...
KpnI REase recognizes palindromic sequence, $GGTAC\downarrow C$, and forms complex in the absence of...
AbstractA two-domain structure of the Type IIS restriction endonuclease MnlI has been identified by ...