bioRxiv ScienceSearch

Biology subjects

Palmer, R.

Publications and source records attributed to Palmer, R..

2 recordsLinked to original sources

Characterization of Drosophila Nidogen/entactin reveals roles in basement membrane stability, barrier function and nervous system plasticity

Basement membranes (BMs) are specialized layers of extracellular matrix (ECM) mainly composed of Laminin, type IV Collagen, Perlecan and Nidogen/entactin (NDG). While the essential and evolutionary conserved functions of Laminin, Collagen and Perlecan are well documented in Drosophila and other species, the proposed role of NDG as the major ECM linker molecule has been challenged by several in vivo studies revealing that NDG is dispensable for viability and BM formation. Here, we report the characterization of the single Ndg gene in Drosophila. Embryonic Ndg expression differed from that of other BM components and was primarily observed in mesodermal tissues and the chordotonal organs, whereas NDG protein localized to all BMs. While loss of Laminin strongly affected BM-localization of NDG, Ndg null mutants exhibited no overt changes in the distribution of BM core components. However, loss of NDG led to ultrastructural BM defects compromising barrier function and stability in vivo. Although Ndg mutants were viable, loss of NDG led to decreased fecundity in flies as well as impaired crawling behavior and reduced response to vibrational stimuli in larvae. Further morphological analysis revealed accompanying defects in the larval peripheral nervous system especially in the chordotonal organs and the neuromuscular junction (NMJ), where Ndg genetically interacted with the Leukocyte-antigen-related-like (Lar) receptor gene to regulate NMJ extension and synaptic differentiation. Taken together, our analysis suggests that NDG is not essential for BM assembly but mediates BM stability and ECM-dependent neural plasticity during Drosophila development.\n\nSummary StatementIn this study we characterize Drosophila Nidogen/Entactin (Ndg) mutants revealing that loss of Ndg impairs basement membrane (BM) stability and permeability as well as proper function of the nervous system.

developmental biology

Serum proteins can successfully predict self-reported ethnicity: Implications for precision-medicine

The effects of inter-individual variability on disease treatment and prevention are important to the goals of \"precision medicine\" 1. In biomedical research, consideration of racial or ethnic differences allows generation and exploration of hypotheses about interactions among genetic and environmental factors responsible for differential medical outcomes. The US National Institutes of Health, therefore recommends adequate participation of subjects from ethnic minority groups in research studies. Nevertheless, considerable debate has focused on validity of race or ethnicity as biological construct 2. Inconsistent definition of race/ethnicity and insignificant genetic variations between ethnic groups have invited disregard to this construct 3. On the contrary, differences in prevalence, expression and outcomes of various diseases among ethnic groups argue for continued and focused attention to ethnicity as important predicting variable. In context of Alzheimers disease (AD), we have previously reported that ethnicity does moderates the proteomic markers of dementia 4. Here, we attempted to classify and predict selfreported ethnicity (Hispanic or non-Hispanic white, [NHW]) using a limited serum profile of 107 proteins. Random Forest (RF) classification method was able to discriminate those two ethnicities with 95% accuracy and could successfully predict ethnicity in an independent test-set (Area under ROC curve: 0.97). Variable selection method led to a condensed set of six proteins which yielded comparable classification and prediction accuracy. Our results provide preliminary evidence for proteomic variability between ethnic groups, and biological validity of ethnicity construct. Moreover, they also offer an opportunity to exploit these differences towards the objectives of precision medicine.

bioinformatics