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American Journal of Medical Genetics
|
January 15, 1993
Somatic cell mosaicism: another source of phenotypic heterogeneity in nuclear families with osteogenesis imperfecta
C D Constantinou-Deltas, R L Ladda, D J Prockop
The Journal of Biological Chemistry
|
March 7, 1997
Collagen II containing a Cys substitution for arg-alpha1-519. Homotrimeric monomers containing the mutation do not assemble into fibrils but alter the self-assembly of the normal protein
A Fertala, L Ala-Kokko, R Wiaderkiewicz, et al.
Matrix Biology : Journal of the International Society for Matrix Biology
|
March 1, 1994
Cadmium ions inhibit procollagen C-proteinase and cupric ions inhibit procollagen N-proteinase
Y Hojima, B Behta, A M Romanic, et al.
DNA Sequence : the Journal of DNA Sequencing and Mapping
|
January 1, 1993
Efficient DNA sequencing on microtiter plates using dried reagents and Bst DNA polymerase
J J Earley, H Kuivaniemi, D J Prockop, et al.
The Journal of Biological Chemistry
|
August 25, 1991
Substitutions for glycine alpha 1-637 and glycine alpha 2-694 of type I procollagen in lethal osteogenesis imperfecta. The conformational strain on the triple helix introduced by a glycine substitution can be transmitted along the helix
T Tsuneyoshi, A Westerhausen, C D Constantinou, et al.
Biochemistry
|
September 13, 1994
Specific inhibition of expression of a human collagen gene (COL1A1) with modified antisense oligonucleotides. The most effective target sites are clustered in double-stranded regions of the predicted secondary structure for the mRNA
A V Laptev, Z Lu, A Colige, et al.
Collagen and Related Research
|
September 1, 1985
Altered helical structure of a homotrimer of alpha 1(I)chains synthesized by fibroblasts from a variant of osteogenesis imperfecta
S B Deak, M van der Rest, D J Prockop
The Journal of Biological Chemistry
|
December 10, 1983
The mRNAs for the pro-alpha 1(I) and pro-alpha 2(I) chains of type I procollagen are translated at the same rate in normal human fibroblasts and in fibroblasts from two variants of osteogenesis imperfecta with altered steady state ratios of the two mRNAs
W J de Wet, M L Chu, D J Prockop
Biochemistry
|
February 16, 1982
Partial purification of a procollagen C-proteinase. Inhibition by synthetic peptides and sequential cleavage of type I procollagen
F K Njieha, T Morikawa, L Tuderman, et al.
Analytical Biochemistry
|
December 1, 1994
Cleavage of type I procollagen by C- and N-proteinases is more rapid if the substrate is aggregated with dextran sulfate or polyethylene glycol
Y Hojima, B Behta, A M Romanic, et al.
Page
of 27
Search research articles
Search
Showing results (71-80 of 266) with videos related to
Sort By:
Page
of 27
American Journal of Medical Genetics
|
January 15, 1993
Somatic cell mosaicism: another source of phenotypic heterogeneity in nuclear families with osteogenesis imperfecta
C D Constantinou-Deltas, R L Ladda, D J Prockop
The Journal of Biological Chemistry
|
March 7, 1997
Collagen II containing a Cys substitution for arg-alpha1-519. Homotrimeric monomers containing the mutation do not assemble into fibrils but alter the self-assembly of the normal protein
A Fertala, L Ala-Kokko, R Wiaderkiewicz, et al.
Matrix Biology : Journal of the International Society for Matrix Biology
|
March 1, 1994
Cadmium ions inhibit procollagen C-proteinase and cupric ions inhibit procollagen N-proteinase
Y Hojima, B Behta, A M Romanic, et al.
DNA Sequence : the Journal of DNA Sequencing and Mapping
|
January 1, 1993
Efficient DNA sequencing on microtiter plates using dried reagents and Bst DNA polymerase
J J Earley, H Kuivaniemi, D J Prockop, et al.
The Journal of Biological Chemistry
|
August 25, 1991
Substitutions for glycine alpha 1-637 and glycine alpha 2-694 of type I procollagen in lethal osteogenesis imperfecta. The conformational strain on the triple helix introduced by a glycine substitution can be transmitted along the helix
T Tsuneyoshi, A Westerhausen, C D Constantinou, et al.
Biochemistry
|
September 13, 1994
Specific inhibition of expression of a human collagen gene (COL1A1) with modified antisense oligonucleotides. The most effective target sites are clustered in double-stranded regions of the predicted secondary structure for the mRNA
A V Laptev, Z Lu, A Colige, et al.
Collagen and Related Research
|
September 1, 1985
Altered helical structure of a homotrimer of alpha 1(I)chains synthesized by fibroblasts from a variant of osteogenesis imperfecta
S B Deak, M van der Rest, D J Prockop
The Journal of Biological Chemistry
|
December 10, 1983
The mRNAs for the pro-alpha 1(I) and pro-alpha 2(I) chains of type I procollagen are translated at the same rate in normal human fibroblasts and in fibroblasts from two variants of osteogenesis imperfecta with altered steady state ratios of the two mRNAs
W J de Wet, M L Chu, D J Prockop
Biochemistry
|
February 16, 1982
Partial purification of a procollagen C-proteinase. Inhibition by synthetic peptides and sequential cleavage of type I procollagen
F K Njieha, T Morikawa, L Tuderman, et al.
Analytical Biochemistry
|
December 1, 1994
Cleavage of type I procollagen by C- and N-proteinases is more rapid if the substrate is aggregated with dextran sulfate or polyethylene glycol
Y Hojima, B Behta, A M Romanic, et al.
Page
of 27