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Kristi A Hohenstein

Publications and source records attributed to Kristi A Hohenstein.

2 recordsLinked to original sources

Molecular adaptation in the ice worm, Mesenchytraeus solifugus: divergence of energetic-associated genes.

The ice worm, Mesenchytraeus solifugus, is the largest glacially obligate metazoan and among only a few metazoan species that complete their life cycle at 0 degrees C. We conducted a large-scale sequencing analysis of cDNAs isolated from ice worm anterior segments. Sequence comparisons among an available group of ice worm, arthropod, chordate, and nematode homologues suggest that ice worms encode proteins that are less bulky, are less polar, and contain fewer charged residues. Also, subunits of the catalytic F1 ATP synthase complex appear to have diverged more rapidly than other ice worm genes examined, suggesting a role in cold-temperature adaptation. Modeling of F1 ATP synthase beta and gamma subunits identified nonconservative, ice worm-specific amino acid substitutions at subunit contact sites and at sites proximal to the catalytic site.

Amino Acid Sequence↗

Changes in gene expression at the precursor --> stem cell transition in leech.

The glossiphoniid leech, Theromyzon trizonare, displays particularly large and accessible embryonic precursor/stem cells during its early embryonic cleavages. We dissected populations of both cell types from staged embryos and examined gene expression profiles by differential display polymerase chain reaction methodology. Among the approximately 10,000 displayed cDNA fragments, 56 (approximately 0.5%) were differentially expressed at the precursor --> stem cell transition; 29 were turned off (degraded, precursor-specific); and 27 were turned on (transcribed, stem cell-specific). Several putative differentially expressed cDNAs from each category were confirmed by Northern blot analysis on staged embryos. DNA sequencing revealed that 19 of the cDNAs were related to a spectrum of genes including the CCR4 antiproliferation gene, Rad family members, and several transcriptional regulators, while the remainder encoded hypothetical (10) or novel (27) sequences. Collectively, these results identify dynamic changes in gene expression during stem cell formation in leech and provide a platform for examining the molecular aspects of stem cell genesis in a simple invertebrate organism.

Animals↗