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Identification of a 29 kDa protein in the envelope of Mycobacterium smegmatis as a putative ferri-exochelin receptor

机译:鉴定分枝杆菌囊膜壳中的29kDa蛋白作为推定的Ferri-Exchelin受体

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Evidence of a direct association between ferri-exochelin, the major extracellular siderophore of Mycobacterium smegmatis, and a 29 kDa protein has been obtained by three separate methods. (1) Direct binding of 55Fe(III)-exochelin by the 29 kDa protein in an envelope preparation from iron-deficient cells was demonstrated by the extraction of a complex with the non-denaturing detergent CHAPS, and subsequent CHAPS-PAGE and autoradiography. (2) Affinity chromatography on a chemically synthesized ferri-exochelin-Sepharose 4B matrix led to the retention of the 29 kDa protein and a 25 kDa protein. The smaller protein was partially eluted with 1mM ferri-exochelin although it did not form a stable complex with ferri-exochelin. The 29 kDa protein could not be eluted from the affinity matrix with 1mM ferri-exochelin either alone or with 1 M NaCl. Only 2% (w/v) SDS could do this, but resulted in protein denaturation. (3) Incubation of 55Fe-exochelin with CHAPS-solubilized envelope proteins in free solution followed by ion-exchange chromatography resolved three radioactive peaks; subsequent analysis by SDS-PAGE showed that the peak with the highest 55Fe-binding activity per unit protein contained both the 29 and 25 kDa proteins. A direct association was demonstrated between the 29 kDa protein and 55Fe-exochelin by gel filtration. The evidence suggests that the 29 kDa iron-regulated envelope protein of M. smegmatis is a ferri-exochelin-binding protein and that the 25 kDa protein, which corresponds in size to a previously reported iron-regulated envelope protein in this bacterium, may have a role in the formation or maintenance of this complex. Proteins extracted from the cell envelope of iron-deficient M. smegmatis with CHAPS were dialysed to remove the detergent, incorporated into liposome suspensions and then incubated with 55Fe(III)-exochelin. This increased the retention of 55Fe by 133-fold compared to proteins not placed in liposomes. Retention of 55Fe was dependent upon the protein loading of the liposomes. Gel filtration confirmed that the iron was retained by these vesicles and even after dialysis the majority of 55Fe was still retained by the vesicles. Re-solubilization of the labelled proteo-liposomes in various detergents gave limited recovery of a ferri-exochelin-protein complex. Attempts to resolve this complex by Triton X-100 PAGE led to separation of the two entities. The complex was stable, however, in a CHAPS-PAGE system.
机译:通过三种单独的方法获得了Ferri-Exchelin之间的直接关联的直接关系,以及29kDa蛋白的三种单独的方法。 (1)通过萃取与非变性洗涤剂的萃取和随后的CHAPS-PAGE和Autoradopraphy来证明,通过萃取复合物的封装制备中的29kDa蛋白的直接结合29kDa蛋白从铁缺陷细胞中的封装。 (2)化学合成的Ferri-Exchelin-Sepharose 4B基质的亲和层析导致29kDa蛋白和25kDa蛋白的保留。较小的蛋白质用1mm ferri-exchelin部分洗脱,但它没有形成稳定的络合物与Ferri-Exchelin。可以单独或用1M NaCl从亲和力基质中从亲和基质中洗脱29kDa蛋白。只有2%(w / v)sds可以这样做,但导致蛋白质变性。 (3)在游离溶液中用CHAPS溶解的包膜蛋白孵育55Fe-exochelin,然后离子交换色谱法分离出三个放射性峰;通过SDS-PAGE进行随后的分析表明,每单位蛋白质的最高55Fe结合活性的峰含有29和25kDa蛋白。通过凝胶过滤在29kDa蛋白和55Fe-exochelin之间证明了直接关联。证据表明,M. Smogmatis的29kDa铁调节封装蛋白是Ferri-Exchelin结合蛋白,并且25kDa蛋白质对应于此细菌中先前报告的铁管制封套蛋白的尺寸可能具有在这种复杂的形成或维护中的作用。透析从铁缺陷M. Smogmatis的细胞包膜中提取的蛋白质用乳液透析除去洗涤剂,掺入脂质体悬浮液中,然后与55Fe(III) - exochelin一起温育。与未置于脂质体中未置于脂质体的蛋白质相比,这增加了55Fe的保留量133倍。保持55Fe的保留依赖于脂质体的蛋白质负载。凝胶过滤证实,通过这些囊泡保留铁,甚至在透析之后,大部分55Fe仍然被囊泡保留。在各种洗涤剂中重新溶解标记的蛋白质 - 脂质体在各种洗涤剂中获得了有限的富硫酸蛋白 - 蛋白质复合物的回收率。尝试通过TRITON X-100页面解决此复杂,导致两个实体的分离。然而,该复数稳定,但在CHAPS页系统中。

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