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Title: DNA polymerase with modified processivity

Abstract

Chimeric DNA polymerase having a DNA polymerase domain and processivity factor binding domain not naturally associated with DNA polymerase domain.

Inventors:
 [1];  [2];  [3]
  1. Brookline, MA
  2. Cambridge, MA
  3. Chestnut Hill, MA
Publication Date:
Research Org.:
Harvard University
OSTI Identifier:
872606
Patent Number(s):
US 5972603
Assignee:
President and Fellows of Harvard College (Cambridge, MA)
DOE Contract Number:  
FG02-88ER60688
Resource Type:
Patent
Country of Publication:
United States
Language:
English
Subject:
dna; polymerase; modified; processivity; chimeric; domain; factor; binding; naturally; associated; binding domain; dna polymerase; polymerase domain; /435/530/

Citation Formats

Bedford, Ella, Tabor, Stanley, and Richardson, Charles C. DNA polymerase with modified processivity. United States: N. p., 1999. Web.
Bedford, Ella, Tabor, Stanley, & Richardson, Charles C. DNA polymerase with modified processivity. United States.
Bedford, Ella, Tabor, Stanley, and Richardson, Charles C. Fri . "DNA polymerase with modified processivity". United States. https://www.osti.gov/servlets/purl/872606.
@article{osti_872606,
title = {DNA polymerase with modified processivity},
author = {Bedford, Ella and Tabor, Stanley and Richardson, Charles C},
abstractNote = {Chimeric DNA polymerase having a DNA polymerase domain and processivity factor binding domain not naturally associated with DNA polymerase domain.},
doi = {},
url = {https://www.osti.gov/biblio/872606}, journal = {},
number = ,
volume = ,
place = {United States},
year = {1999},
month = {1}
}

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Works referenced in this record:

Cloning, nucleotide sequence, and expression in escherichia coli of DNA polymerase gene (polA) from thermus thermophilus HB8
journal, January 1993


A general structure for DNA-dependent DNA polymerases
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Reverse transcription and DNA amplification by a Thermus thermophilus DNA polymerase
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Analysis of macromolecular interactions using immobilized ligands
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Deoxyribonucleic Acid Synthesis in Bacteriophage SP01-infected Bacillus subtilis
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