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K(+)-coupled amino acid transporter 1 (KAAT1) belongs to the NSS family of solute transporters and it is expressed in the midgut and in salivary glands of Manduca sexta larvae. As more than 80% of family members, KAAT1 shows a stretch of three glycines (G85-G87) that according to the structure of the prototype transporter LeuT, is located close to the access of the permeation pathway. In this work the role of the triplet has been investigated by alanine and cysteine scanning methods in protein heterologously expressed in Xenopus laevis oocytes. All the mutants were functional but the surface expression level was reduced for G85A and G87A mutants and unaffected for G86A mutant. All presented altered amino acid uptake and transport associated currents in the presence of each of the cations (Na(+), K(+), Li(+)) that can be exploited by the wt. G87A mutant induced increased uncoupled fluxes in the presence of all the cations. Cross-linking studies, performed by the treatment of cysteine mutants with the oxidative complex Cu(II)(1,10-phenanthroline)(3), showed that limiting the flexibility of the region by covalent blockage of position 87, causes a significant reduction of amino acid uptake. Na(+) protected G87C mutant from oxidation, both directly and indirectly. The conserved glycine triplet in KAAT1 plays therefore a complex role that allows initial steps of cation interaction with the transporter.  相似文献   
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To the SLC6 family belong 20 human transporters that utilize the sodium electrochemical gradient to move biogenic amines, osmolytes, amino acids and related compounds into cells. They are classified into two functional groups, the Neurotransmitter transporters (NTT) and Nutrient amino acid transporters (NAT). Here we summarize how since their first cloning in 1998, the insect (Lepidopteran) Orthologs of the SLC6 family transporters have represented very important tools for investigating functional–structural relationships, mechanism of transport, ion and pH dependence and substate interaction of the mammalian (and human) counterparts.

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3.
Summary

The aim of this first contribution to the ecological meaning of the ascorbic acid, is specifically to search the relations between thermoperiodical conditions and the ascorbic acid content in green plants.

The effect of variations of the night-temperature (by unvaried daily conditions) on the ascorbic acid content, has been assayed throghout a series of esperiences.

On the whole, it has been observed, as a first result, an inverse relation between the degree of night-temperature and the ascorbic acid content of the leaves (night-t° betweeen 12° and 28° C; test-plants: Nicotiana Tabacum L., v. Java; Lycopersicum esculentum Mill. v. S. Marzano; Solanum tuberosum L., v. Majestic; Impatiens balsamina L.).

The possible practic finality of these investigations and some theoretic considerations, especially concerning the ecological point of view, are discussed.  相似文献   
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