大肠杆菌溶血素分泌装置——减毒沙门氏菌的多功能抗原递送系统。

Behring Institute Mitteilungen Pub Date : 1997-02-01
I Gentschev, G Dietrich, H J Mollenkopf, Z Sokolovic, J Hess, S H Kaufmann, W Goebel
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引用次数: 0

摘要

大肠杆菌溶血素(HlyA)分泌装置代表I型分泌系统,在沙门氏菌中完全起作用。该系统由两个特异性膜蛋白HlyB和HlyD以及外膜蛋白TolC组成,可识别HlyA上位于c端约60个氨基酸的信号序列。这个信号序列在c端共价连接的融合蛋白也被这个分泌装置识别。分泌的效率取决于报告蛋白的折叠率。最近构建的转座子TnhlyAs可以将分泌信号插入到报告蛋白的任何区域,从而可以筛选给定报告蛋白中不能作为整个蛋白分泌的分泌能力区域。在10到1000个氨基酸之间的任何来源的抗原的遗传信息都可以很容易地插入到最近构建的分泌载体中,该载体将允许在减毒鼠伤寒沙门氏菌菌株和其他减毒肠杆菌科中分泌融合抗原。通过操纵Hly分泌系统,抗原可以完全分泌到环境中,固定在外膜上或停留在所用载体菌株的细胞质中。通过使用适当的减毒沙门氏菌菌株,抗原被递送到分离的室或细胞质室。在适当的载体菌株的帮助下,这种抗原的细胞外递送也是可能的。处理抗原的不同显示的免疫学后果将在本卷中由赫斯等人在论文中讨论。利用类似的抗原传递系统,对感染中免疫系统识别的未知抗原进行简单的鉴定和分子表征也是可行的。
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The Escherichia coli hemolysin secretion apparatus--a versatile antigen delivery system in attenuated Salmonella.

The E. coli hemolysin (HlyA) secretion apparatus represents a type I secretion system that is fully functional in Salmonella. The system which consists of the two specific membrane proteins HlyB and HlyD and the outer membrane protein TolC, recognizes on HlyA a C-terminally located signal sequence of about 60 amino acids. Fusion proteins to which this signal sequence is covalently linked at the C-terminus are also recognized by this secretion apparatus. The efficiency of secretion is dependent on the rate of folding of the reporter protein. Secretion-competent regions of a given reporter protein that is not secretable as entire protein can be screened by a recently constructed transposon TnhlyAs which allows the insertion of the secretion signal into any region of the reporter protein. The genetic information for antigens of any source ranging in size between 10 and 1000 amino acids can be easily inserted into a recently constructed secretion vector which will allow the secretion of the fused antigen(s) in attenuated Salmonella typhimurium strains and in other attenuated Enterobacteriaceae. By manipulation of the Hly secretion system the antigen can be either completely secreted into the environment, fixed on the outer membrane or arrested in the cytoplasm of the used carrier strain. By the use of appropriate attenuated Salmonella strains the antigen is delivered in isolated compartments or to the cytosolic compartment. The extracellular delivery of such antigens is also possible with the help of appropriate carrier strains. The immunological consequences of the different display of the processed antigen will be discussed in the paper by Hess et al in this volume. With a similar antigen delivery system the easy identification and molecular characterization of unknown antigens recognized by the immune system in an infection is also feasible.

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