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‘Venus trapped Mars transits: Cu and Fe redox chemistry cellular topography and in situ ligand binding in terrestrial isopod hepatopancreas

机译:金星被困火星过境:陆地和等足动物肝胰腺中的铜和铁氧化还原化学细胞形貌和原位配体结合

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摘要

Woodlice efficiently sequester copper (Cu) in ‘cuprosomes' within hepatopancreatic ‘S' cells. Binuclear ‘B’ cells in the hepatopancreas form iron (Fe) deposits; these cells apparently undergo an apocrine secretory diurnal cycle linked to nocturnal feeding. Synchrotron-based µ-focus X-ray spectroscopy undertaken on thin sections was used to characterize the ligands binding Cu and Fe in S and B cells of Oniscus asellus (Isopoda). Main findings were: (i) morphometry confirmed a diurnal B-cell apocrine cycle; (ii) X-ray fluorescence (XRF) mapping indicated that Cu was co-distributed with sulfur (mainly in S cells), and Fe was co-distributed with phosphate (mainly in B cells); (iii) XRF mapping revealed an intimate morphological relationship between the basal regions of adjacent S and B cells; (iv) molecular modelling and Fourier transform analyses indicated that Cu in the reduced Cu+ state is mainly coordinated to thiol-rich ligands (Cu–S bond length 2.3 Å) in both cell types, while Fe in the oxidized Fe3+ state is predominantly oxygen coordinated (estimated Fe–O bond length of approx. 2 Å), with an outer shell of Fe scatterers at approximately 3.05 Å; and (v) no significant differences occur in Cu or Fe speciation at key nodes in the apocrine cycle. Findings imply that S and B cells form integrated unit-pairs; a functional role for secretions from these cellular units in the digestion of recalcitrant dietary components is hypothesized.
机译:Woodlice有效地隔离了肝胰腺“ S”细胞中“ cuprosomes”中的铜(Cu)。肝胰腺中的双核“ B”细胞形成铁(Fe)沉积物;这些细胞显然经历与夜间进食有关的顶泌分泌昼夜周期。在薄切片上进行的基于同步加速器的μ聚焦X射线光谱学被用来表征Asiscus asellus(Isopoda)S和B细胞中结合Cu和Fe的配体。主要发现是:(i)形态测定证实了昼夜B细胞顶泌周期; (ii)X射线荧光(XRF)映射表明,铜与硫共分布(主要在S细胞中),铁与磷酸盐共分布(主要在B细胞中); (iii)XRF图谱显示相邻S细胞和B细胞的基础区域之间存在紧密的形态关系; (iv)分子建模和傅里叶变换分析表明,在两种细胞类型中,处于还原的Cu + 状态的Cu主要与富含硫醇的配体(Cu–S键长2.3Å)协调,而Fe Fe 3 + 的氧化态主要是氧配位的(估计的Fe–O键长约为2Å),Fe散射体的外壳约为3.05Å; (v)在高教周期的关键节点,铜或铁的形态没有显着差异。研究结果表明,S和B细胞形成整合的单元对。据推测,这些细胞单位的分泌物在难消化的饮食成分的消化中具有功能性作用。

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