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V Solanki

Publications and source records attributed to V Solanki.

4 recordsLinked to original sources

Sulfated mannan of diatoms selects host-specific microbiota in the sunlit ocean.

BACKGROUND: Diatoms, a keystone phylum in Earth's ecosystems, are responsible for substantial oxygen production and the fixation of carbon dioxide in the form of carbohydrates that fuel global food webs. They host diverse prokaryotes, yet how diatoms preferentially recruit those with complementary metabolic traits remains unknown. RESULTS: We discovered that diatoms exude a C6-sulfated α-1,3-mannan that serves as a selective carbon source for adapted Polaribacter. Its structure was resolved using NMR spectroscopy, chromatography, chemical synthesis, and enzymatic dissection. Biochemical, physiological, and structural analyses demonstrated, that specialized Bacteroidota employ a four-enzyme pathway to metabolize this glycan. Metagenomic and transcriptomic data revealed that sulfated mannan utilization loci are globally abundant and actively expressed in surface ocean bacterioplankton. Because this mannan provides only carbon, oxygen, sulfur, and hydrogen, bacteria must obtain other essential elements elsewhere, reinforcing metabolic interdependence. CONCLUSIONS: Together, these results define a chemically specific interaction between diatoms and specialized bacteria that is mediated by a single sulfated polysaccharide and a dedicated four-enzyme degradation pathway. Presence of this pathway in marine metagenomes and transcriptomes indicates that a sulfated mannan from diatoms exerts selection pressure in the sunlit ocean microbiome. Video Abstract.

Diatoms

The beta-adrenergic receptor of newborn mouse skin.

Binding of the potent beta-adrenergic antagonist [125I]iodohydroxybenzylpindolol ([125I]IHYP) to particulate preparations from newborn mouse skin was characterized. A number of criteria were used to establish that binding occurred to specific, high affinity beta-adrenergic receptors in the skin preparations. Thus specific binding (that displaced by 10 micrometer concentrations of the beta-adrenergic antagonist (-)propranolol) reached equilibrium in 15--20 min, was saturable (ligand concentration for half-maximal saturation, 0.25 nM) and freely reversible. Stereoselectivity of binding was demonstrated by the observation that displacement of [125I]IHYP by (-)propranolol occurred at concentrations at least 100 times lower than with (+)isoproterenol. Displacement was also observed with the beta-adrenergic agonists (-)isoproterenol, (-)epinephrine and (-)norepinephrine, but not with the alpha-adrenergic antagonist phentolamine.

Adrenergic beta-Agonists