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gp330与RAP:海曼肾炎抗原复合物

gp330 and RAP: the Heymann nephritis antigenic complex.

作者信息

Farquhar M G, Kerjaschki D, Lundstrom M, Orlando R A

机构信息

Division of Cellular and Molecular Medicine, University of California, San Diego, La Jolla 92093-0651.

出版信息

Ann N Y Acad Sci. 1994 Sep 10;737:96-113. doi: 10.1111/j.1749-6632.1994.tb44304.x.

Abstract

It is apparent that significant progress has been made in the characterization of gp330 in the years that have elapsed since its initial identification as the nephritogenic antigen of Heymann nephritis. However, there are still many gaps in our knowledge and we do not yet have a full picture of the molecular events leading to the formation of immune deposits in glomerular capillaries. Moreover, we still do not have direct information on the normal function(s) of gp330 and RAP and their trafficking in renal and other epithelia. The availability of the yolk sac and other cell lines that express gp330 and RAP together with the identification of the functional domains of RAP should greatly facilitate experimental studies designed to elucidate these problems. Progress will also be greatly facilitated in the future when the complete amino-acid sequence of gp330 becomes available, making possible further structural studies. It is our hope that new knowledge obtained on the molecular mechanisms of HN will provide insights into the molecular pathogenesis of human membranous nephropathy and will provide a strategy for the design of appropriate treatments to interrupt the process.

摘要

自最初被鉴定为海曼肾炎的致肾炎抗原以来,在对gp330的特性描述方面显然已经取得了重大进展。然而,我们的知识仍存在许多空白,对于导致肾小球毛细血管中免疫沉积物形成的分子事件,我们尚未有全面的了解。此外,我们仍然没有关于gp330和RAP的正常功能及其在肾脏和其他上皮细胞中的运输的直接信息。卵黄囊和其他共同表达gp330和RAP的细胞系的可用性,以及RAP功能域的鉴定,应该会极大地促进旨在阐明这些问题的实验研究。当gp330的完整氨基酸序列可用时,未来的进展也将得到极大的促进,从而使进一步的结构研究成为可能。我们希望,从海曼肾炎分子机制中获得的新知识将为人类膜性肾病的分子发病机制提供见解,并为设计适当的治疗方法以中断该过程提供策略。

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