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F B Howard

Showing results (1-10 of 29) with videos related to

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Biopolymers|February 1, 1983
Poly(2-aminodeoxyadenylic acid): circular dichroism and thermal stability of its complexes and their relevance to phage DNA in which a is replaced by 2NH2AF B Howard, H T Miles
Biochemistry|December 18, 1984
2NH2A X T helices in the ribo- and deoxypolynucleotide series. Structural and energetic consequences of 2NH2A substitutionF B Howard, H T Miles
Biochemistry|October 18, 1977
Interaction of poly(A) and poly(I). A reinvestigationF B Howard, H T Miles
Biochemistry|December 21, 1982
Poly(inosinic acid) helices: essential chelation of alkali metal ions in the axial channelF B Howard, H T Miles
The Journal of Biological Chemistry|May 10, 1974
Poly-8-bromoadenylic acid. A helical, all-syn homopolynucleotideF B Howard, J Frazier, H T Miles
Biochemistry|August 24, 1976
Poly(2-aminoadenylic acid): interaction with poly(uridylic acid)F B Howard, J Frazier, H T Miles
The Journal of Biological Chemistry|May 25, 1975
Poly(8-bromoadenylic acid): synthesis and characterization of an all-syn polynucleotideF B Howard, J Frazier, H T Miles
Biochemistry|May 27, 1980
Copolymers of adenylic and 2-aminoadenylic acids. Effect of progressive changes in hydrogen bonding and stacking on interaction with poly(uridylic acid)M Muraoka, H T Miles, F B Howard
The Journal of Biological Chemistry|October 25, 1972
Formation of polynucleotide helices having purine nucleotide residues in a syn configurationF B Howard, J Frazier, H T Miles
The Journal of Biological Chemistry|December 10, 1971
Interaction of polyribothymidylic acid with polyadenylic acidF B Howard, J Frazier, H T Miles
Pageof 3

Showing results (1-10 of 29) with videos related to

Sort By:
Pageof 3
Biopolymers|February 1, 1983
Poly(2-aminodeoxyadenylic acid): circular dichroism and thermal stability of its complexes and their relevance to phage DNA in which a is replaced by 2NH2AF B Howard, H T Miles
Biochemistry|December 18, 1984
2NH2A X T helices in the ribo- and deoxypolynucleotide series. Structural and energetic consequences of 2NH2A substitutionF B Howard, H T Miles
Biochemistry|October 18, 1977
Interaction of poly(A) and poly(I). A reinvestigationF B Howard, H T Miles
Biochemistry|December 21, 1982
Poly(inosinic acid) helices: essential chelation of alkali metal ions in the axial channelF B Howard, H T Miles
The Journal of Biological Chemistry|May 10, 1974
Poly-8-bromoadenylic acid. A helical, all-syn homopolynucleotideF B Howard, J Frazier, H T Miles
Biochemistry|August 24, 1976
Poly(2-aminoadenylic acid): interaction with poly(uridylic acid)F B Howard, J Frazier, H T Miles
The Journal of Biological Chemistry|May 25, 1975
Poly(8-bromoadenylic acid): synthesis and characterization of an all-syn polynucleotideF B Howard, J Frazier, H T Miles
Biochemistry|May 27, 1980
Copolymers of adenylic and 2-aminoadenylic acids. Effect of progressive changes in hydrogen bonding and stacking on interaction with poly(uridylic acid)M Muraoka, H T Miles, F B Howard
The Journal of Biological Chemistry|October 25, 1972
Formation of polynucleotide helices having purine nucleotide residues in a syn configurationF B Howard, J Frazier, H T Miles
The Journal of Biological Chemistry|December 10, 1971
Interaction of polyribothymidylic acid with polyadenylic acidF B Howard, J Frazier, H T Miles
Pageof 3