Search bioRxivSearch

Biology subjects

Hogan, J. D.

Publications and source records attributed to Hogan, J. D..

2 recordsLinked to original sources

Proteomic Profiling and Biological Characterization of Extracellular Vesicles Isolated from Human Alzheimer’s Disease Brain Tissues

IntroductionExtracellular vesicles (EVs) from human Alzheimers disease (AD) biospecimens contain amyloid-{beta} peptide (A{beta}) and tau. While AD EVs are known to affect brain disease pathobiology, their biochemical and molecular characterizations remain ill defined.\n\nMethodsEVs were isolated from the cortical grey matter of 20 AD and 18 control brains. Tau and A{beta} levels were measured by immunoassay. Differentially expressed EV proteins were assessed by quantitative proteomics and machine learning.\n\nResultsLevels of pS396 tau and A{beta} were significantly elevated in AD EVs. High levels of neuron- and glia- specific factors are detected in control and AD EVs, respectively. Machine learning identified ANXA5, VGF, GPM6A and ACTZ in AD EV compared to controls. They distinguished AD EVs from controls in the test sets with 88% accuracy.\n\nDiscussionIn addition to A{beta} and tau, ANXA5, VGF, GPM6A and ACTZ are new signature proteins in AD EVs.

biochemistry

The Developmental Transcriptome for Lytechinus variegatus Exhibits Temporally Punctuated Gene Expression Changes

Embryonic development is arguably the most complex process an organism undergoes during its lifetime, and understanding this complexity is best approached with a systems-level perspective. The sea urchin has become a highly valuable model organism for understanding developmental specification, morphogenesis, and evolution. As a non-chordate deuterostome, the sea urchin occupies an important evolutionary niche between protostomes and vertebrates. Lytechinus variegatus (Lv) is an Atlantic species that has been well studied, and which has provided important insights into signal transduction, patterning, and morphogenetic changes during embryonic and larval development. The Pacific species, Strongylocentrotus purpuratus (Sp), is another well-studied sea urchin, particularly for gene regulatory networks (GRNs) and cis-regulatory analyses. A well-annotated genome and transcriptome for Sp are available, but similar resources have not been developed for Lv. Here, we provide an analysis of the Lv transcriptome at 11 timepoints during embryonic and larval development. The data indicate that the gene regulatory networks that underlie specification are well-conserved among sea urchin species. We show that the major transitions in variation of embryonic transcription divide the developmental time series into four distinct, temporally sequential phases. Our work shows that sea urchin development occurs via sequential intervals of relatively stable gene expression states that are punctuated by abrupt transitions.

developmental biology