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Dive into the research topics where Richard W Armentrout is active.

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Featured researches published by Richard W Armentrout.


Biochimica et Biophysica Acta | 1978

Replication of the genes coding for 5 S RNA in synchronized HeLa cells

Ching Ho; Richard W Armentrout

The duplication of the genes coding for 5-S RNA has been followed during the S phase of HeLa cell cultures synchronized by mitotic detechment. Replication was analyzed by exposing the cultures to bromodeoxyuridine (BrdUrd) for 3 h at successive intervals and analyzing the DNA product in CsCl density gradients. DNA containing the 5-S genes was detected in the gradients by molecular hybridization using purified 125I-labeled 5 S RNA. In addition, as an internal marker of S phase chronology, late DNA replication was followed by examining the incorporation of [3H]thymidine into repetitive DNA (C0t less than 0.01 fraction). The results indicated that greater than 85% of the cells in the culture were synchronously dividing and that greater than 80% of the 5-S genes replicate in the first half of S phase, whereas the rapidly reassociating fraction of the DNA replicates in the second half of S phase.


Journal of Bacteriology | 1998

Assignment of biochemical functions to glycosyl transferase genes which are essential for biosynthesis of exopolysaccharides in Sphingomonas strain S88 and Rhizobium leguminosarum.

Thomas J. Pollock; Wilbert A. T. van Workum; Linda Thorne; Marcia Mikolajczak; Motohide Yamazaki; Jan W. Kijne; Richard W Armentrout


Applied and Environmental Microbiology | 1992

Isolation of New Aureobasidium Strains That Produce High-Molecular-Weight Pullulan with Reduced Pigmentation

Thomas J. Pollock; Linda Thorne; Richard W Armentrout


Applied and Environmental Microbiology | 1981

Molecular Cloning of Genes for Cellobiose Utilization and Their Expression in Escherichia coli

Richard W Armentrout; Ronald D. Brown


Applied and Environmental Microbiology | 1994

Sphinganase, a new endoglycanase that cleaves specific members of the gellan family of polysaccharides.

M J Mikolajczak; Linda Thorne; Thomas J. Pollock; Richard W Armentrout


Archive | 1982

Biologically engineered plasmid coding for production of β-glucosidase, organisms modified by this plasmid and methods of use

Richard W Armentrout; Ronald D. Brown


Archive | 1996

DNS-Segmente und Verfahren zur Erhöhung von Polysaccharid-Produktion

Thomas J. Pollock; Linda Thorne; Motohide Yamazaki; Marcia Mikolajczak; Richard W Armentrout


Archive | 2001

Herstellung von Sphingomonas exopolysaccharide die nicht zur Oberfläche der bakteriellen Zellen gebunden sein Producing Sphingomonas exopolysaccharides Be not bound to the surface of bacterial cells

Motohide Yamazaki; Marcia Mikolajczak; Thomas J. Pollock; Richard W Armentrout


Archive | 1996

DNA-Segmente und Verfahren zur Steigerung der Polysaccharidproduktion

Thomas J. Pollock; Linda Thorne; Motohide Yamazaki; Marcia Mikolajczak; Richard W Armentrout


Archive | 1996

DNS-Segmente und Verfahren zur Erhöhung von Polysaccharid-Produktion DNA segments, and methods for increasing production of polysaccharide

Richard W Armentrout; Marcia Encinitas Mikolajczak; Thomas J. Pollock; Linda Thorne; Motohide Yamazaki

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Thomas J. Pollock

East Tennessee State University

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Motohide Yamazaki

East Tennessee State University

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Kaname Inoue

East Tennessee State University

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Ching Ho

University of Cincinnati

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