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361.
362.
The presence of (+)-3-oxo-21α-methoxyserrat-14-ene in the liverwort Nardia scalaris augments the present knowledge on distribution of triterpenoids of the serratane type in nature, and represents a further example of triterpene biosynthesis by plants of the Marchantiopsida. 相似文献
363.
Monica Sueiro-Olivares Jennifer Scott Sara Gago Dunja Petrovic Emilia Kouroussis Jasmina Zivanovic Yidong Yu Marlene Strobel Cristina Cunha Darren Thomson Rachael Fortune-Grant Sina Thusek Paul Bowyer Andreas Beilhack Agostinho Carvalho Elaine Bignell Milos R. Filipovic Jorge Amich 《PLoS biology》2021,19(6)
Aspergillus fumigatus is a human fungal pathogen that can cause devastating pulmonary infections, termed “aspergilloses,” in individuals suffering immune imbalances or underlying lung conditions. As rapid adaptation to stress is crucial for the outcome of the host–pathogen interplay, here we investigated the role of the versatile posttranslational modification (PTM) persulfidation for both fungal virulence and antifungal host defense. We show that an A. fumigatus mutant with low persulfidation levels is more susceptible to host-mediated killing and displays reduced virulence in murine models of infection. Additionally, we found that a single nucleotide polymorphism (SNP) in the human gene encoding cystathionine γ-lyase (CTH) causes a reduction in cellular persulfidation and correlates with a predisposition of hematopoietic stem cell transplant recipients to invasive pulmonary aspergillosis (IPA), as correct levels of persulfidation are required for optimal antifungal activity of recipients’ lung resident host cells. Importantly, the levels of host persulfidation determine the levels of fungal persulfidation, ultimately reflecting a host–pathogen functional correlation and highlighting a potential new therapeutic target for the treatment of aspergillosis.This study reveals that the post-translational modification persulfidation is important for both fungal virulence and the host antifungal response. The level of persulfidation in the host, which correlates with its antifungal potency, impacts the level required in the fungus to counteract host attack, reflecting a functional correlation. Thus modulating persulfidation may be a promising strategy to target both pathogens and immune responses. 相似文献
364.
To test whether predator odor exposure negatively affects the behavior of prey, we exposed three groups of male house mice
(Mus musculus) to the odors of cat (Felis catus) urine, rabbit (Oryctolagus cuniculus) urine and water (control), respectively, for consecutive 58 days and investigated how the treatments affected the response,
aggressiveness, dominance, urinary attractiveness to females and pheromone composition of male mice. Compared to mice exposed
to rabbit urine or water, those exposed to cat odor did not show any response habituation to the cat odor and became more
aggressive, increased mark urine production and were more attractive to females when the latter were tested with their urine.
Furthermore, gas chromatography coupled with mass spectrometry analysis revealed coincident elevations of the well-known male
pheromones, E,E-α-farnesene, E-β-farnesene, R,R-dehydro-exo-brevicomin or S-2-sec-butyl-dihydrothiazole. In addition, rabbit urine exposure increased urinary attractiveness to females and pheromonal levels
of the males in comparison with the mice exposed to water. This could be related to olfactory enrichment of heterospecific
chemosignals, suggesting that predator odors were more beneficial. In light of these anti-intuitional findings in the chemical
interaction between cats and mice, we conclude that predator odor affects prey more profoundly than previously believed and
that its impact may not always be negative. 相似文献
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366.
Mirsana P. Ebrahimkutty Milos Galic 《BioEssays : news and reviews in molecular, cellular and developmental biology》2019,41(10)
Plasma membranes are subject to continuous deformations. Strikingly, some of these transient membrane undulations yield membrane‐associated signaling hubs that differ in composition and function, depending on membrane geometry and the availability of co‐factors. Here, recent advancements on this ubiquitous type of receptor‐independent signaling are reviewed, with a special focus on emerging concepts and technical challenges associated with studying these elusive signaling sites. 相似文献
367.
Milos Sevarika Maria Cristina Foti Ezio Peri Stefano Colazza Eric Wajnberg 《Ecological Entomology》2021,46(1):100-105
- The ability of parasitoid females to perceive chemical traces left by their hosts is of utmost importance in the host location process. The behaviours involved in such ability have thus most likely been promoted by natural selection in the course of the evolutionary time. For this to happen, however, there must be significant genetic variation in natural populations on which natural selection could act.
- Using the isofemale line method and motion analysis, we detected significant intra‐population genetic variation for several walking behaviour traits of the egg parasitoid Trissolcus brochymenae (Hymenoptera: Scelionidae) females responding to chemical traces left by its host Murgantia histrionica (Heteroptera: Pentatomidae).
- Besides opening new avenues of research on the reproductive strategies, behaviour, and biological control potential of parasitoid wasps, these results also have implications for understanding their life‐history evolution in general.
368.
Robart Babona-Pilipos Milos R. Popovic Cindi M. Morshead 《Journal of visualized experiments : JoVE》2012,(68)
The discovery of neural stem and progenitor cells (collectively termed neural precursor cells) (NPCs) in the adult mammalian brain has led to a body of research aimed at utilizing the multipotent and proliferative properties of these cells for the development of neuroregenerative strategies. A critical step for the success of such strategies is the mobilization of NPCs toward a lesion site following exogenous transplantation or to enhance the response of the endogenous precursors that are found in the periventricular region of the CNS. Accordingly, it is essential to understand the mechanisms that promote, guide, and enhance NPC migration. Our work focuses on the utilization of direct current electric fields (dcEFs) to promote and direct NPC migration - a phenomenon known as galvanotaxis. Endogenous physiological electric fields function as critical cues for cell migration during normal development and wound repair. Pharmacological disruption of the trans-neural tube potential in axolotl embryos causes severe developmental malformations1. In the context of wound healing, the rate of repair of wounded cornea is directly correlated with the magnitude of the epithelial wound potential that arises after injury, as shown by pharmacological enhancement or disruption of this dcEF2-3. We have demonstrated that adult subependymal NPCs undergo rapid and directed cathodal migration in vitro when exposed to an externally applied dcEF. In this protocol we describe our lab''s techniques for creating a simple and effective galvanotaxis assay for high-resolution, long-term observation of directed cell body translocation (migration) on a single-cell level. This assay would be suitable for investigating the mechanisms that regulate dcEF transduction into cellular motility through the use of transgenic or knockout mice, short interfering RNA, or specific receptor agonists/antagonists. 相似文献
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