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101.
Fereydoun Ala Jean-Pierre Allain Imelda Bates Kamel Boukef Frank Boulton James Brandful Elizabeth M. Dax Magdy El Ekiaby Albert Farrugia Jed Gorlin Oliver Hassall Helen Lee Andr�� Loua Kathryn Maitland Dora Mbanya Zainab Mukhtar William Murphy Ohene Opare-Sem Shirley Owusu-Ofori Henk Reesink David Roberts Oscar Torres Grace Totoe Henrik Ullum Silvano Wendel 《PLoS medicine》2012,9(9)
102.
Huixin Lin Yongqing Yang Ruidang Quan Imelda Mendoza Yisheng Wu Wenming Du Shuangshuang Zhao Karen S. Schumaker José M. Pardo Yan Guo 《The Plant cell》2009,21(5):1607-1619
The Salt Overly Sensitive (SOS) pathway plays an important role in the regulation of Na+/K+ ion homeostasis and salt tolerance in Arabidopsis thaliana. Previously, we reported that the calcium binding proteins SOS3 and SOS3-LIKE CALCIUM BINDING PROTEIN8 (SCaBP8) nonredundantly activate the protein kinase SOS2. Here, we show that SOS2 phosphorylates SCaBP8 at its C terminus but does not phosphorylate SOS3. In vitro, SOS2 phosphorylation of SCaBP8 was enhanced by the bimolecular interaction of SOS2 and SCaBP8 and did not require calcium ions. In vivo, this phosphorylation was induced by salt stress, occurred at the membrane, stabilized the SCaBP8-SOS2 interaction, and enhanced plasma membrane Na+/H+ exchange activity. When a Ser at position 237 in the SCaBP8 protein (the SOS2 phosphorylation target) was mutated to Ala, SCaBP8 was no longer phosphorylated by SOS2 and the mutant protein could not fully rescue the salt-sensitive phenotype of the scabp8 mutant. By contrast, when Ser-237 was mutated to Asp to mimic the charge of a phosphorylated Ser residue, the mutant protein rescued the scabp8 salt sensitivity. These data demonstrate that calcium sensor phosphorylation is a critical component of SOS pathway regulation of salt tolerance in Arabidopsis. 相似文献
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Wendy J. Bateman Imelda Donnellan Ian A. Fraser Ling S. Wong Alan G. Morris 《Cancer immunology, immunotherapy : CII》1995,41(1):61-67
Significant numbers of infiltrating mononuclear cells are commonly observed in solid tumours, although their role in restricting tumour growth is not clear. Tumour-infiltrating lymphocytes (TIL) from 38 patients with colorectal cancer, in parallel with peripheral blood lymphocytes (PBL), were assayed to determine their ability to proliferate in response to concanavalin A (ConA), interleukin-2 (IL-2), ConA+IL-2, phorbol 12-myristate 13-acetate (PMA)+ionomycin (IOM), and staphylococcal enterotoxin B (SEB). These reagents were selected to give a range of weak to strong proliferative responses either via or independent of the T cell receptor. Proliferation of TIL was significantly lower than that of PBL in all cultures: ConA (P<0.001), IL-2 (P=0.002), ConA+IL-2 (P<0.001), PMA+IOM (P<0.001), SEB (P=0.002). In addition to the low proliferative capacity of TIL, production of cytokines by TIL may also play a role in control of tumour growth. We have assayed IFN production in the supernatants from 16 paired TIL and PBL cultures, and tumour necrosis factor (TNF) in 6 paired cultures. TNF concentrations were significantly lower in TIL cultures than in PBL cultures stimulated with ConA (P<0.05), but no different in control or IL-2 stimulated cultures. IFN levels did not significantly differ between PBL and TIL cultures, indicating that despite the restricted proliferative capacity of TIL, these cells remain capable of secreting significant amounts of IFN. 相似文献
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Alexander C. Keyel Morgan E. Gorris Ilia Rochlin Johnny A. Uelmen Luis F. Chaves Gabriel L. Hamer Imelda K. Moise Marta Shocket A. Marm Kilpatrick Nicholas B. DeFelice Justin K. Davis Eliza Little Patrick Irwin Andrew J. Tyre Kelly Helm Smith Chris L. Fredregill Oliver Elison Timm Karen M. Holcomb Michael C. Wimberly Matthew J. Ward Christopher M. Barker Charlotte G. Rhodes Rebecca L. Smith 《PLoS neglected tropical diseases》2021,15(9)
West Nile virus (WNV) is a globally distributed mosquito-borne virus of great public health concern. The number of WNV human cases and mosquito infection patterns vary in space and time. Many statistical models have been developed to understand and predict WNV geographic and temporal dynamics. However, these modeling efforts have been disjointed with little model comparison and inconsistent validation. In this paper, we describe a framework to unify and standardize WNV modeling efforts nationwide. WNV risk, detection, or warning models for this review were solicited from active research groups working in different regions of the United States. A total of 13 models were selected and described. The spatial and temporal scales of each model were compared to guide the timing and the locations for mosquito and virus surveillance, to support mosquito vector control decisions, and to assist in conducting public health outreach campaigns at multiple scales of decision-making. Our overarching goal is to bridge the existing gap between model development, which is usually conducted as an academic exercise, and practical model applications, which occur at state, tribal, local, or territorial public health and mosquito control agency levels. The proposed model assessment and comparison framework helps clarify the value of individual models for decision-making and identifies the appropriate temporal and spatial scope of each model. This qualitative evaluation clearly identifies gaps in linking models to applied decisions and sets the stage for a quantitative comparison of models. Specifically, whereas many coarse-grained models (county resolution or greater) have been developed, the greatest need is for fine-grained, short-term planning models (m–km, days–weeks) that remain scarce. We further recommend quantifying the value of information for each decision to identify decisions that would benefit most from model input. 相似文献
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Amatore C Arbault S Bonifas I Guille M Lemaître F Verchier Y 《Biophysical chemistry》2007,129(2-3):181-189
Amperometry is a simple and powerful technique to study exocytosis at the single cell level. By positioning and polarizing (at an appropriate potential at which the molecules released by the cell can be oxidized) a carbon fiber microelectrode at the top of the cell, each exocytotic event is detected as an amperometric spike. More particularly, a portion of these spikes has previously been shown to present a foot, i.e. a small pedestal of current that precedes the spike itself. Among the important number of works dealing with the monitoring of exocytosis by amperometry under different conditions, only a few studies focus on amperometric spikes with a foot. In this work, by coupling our previous and recent experiments on chromaffin cells (that release catecholamines after stimulation) with literature data, we bring more light on what an amperometric foot and particularly its features, represents. 相似文献