Entamoeba histolytica encodes unique formins, a subset of which regulates DNA content and cell division

Majumder, Shubhra ; Lohia, Anuradha (2008) Entamoeba histolytica encodes unique formins, a subset of which regulates DNA content and cell division Infection and Immunity, 76 (6). pp. 2368-2378. ISSN 0019-9567

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Official URL: http://iai.asm.org/cgi/content/abstract/76/6/2368

Related URL: http://dx.doi.org/10.1128/IAI.01449-07

Abstract

The formin family of proteins mediates dynamic changes in actin assembly in eukaryotes, and therefore it is important to understand the function of these proteins in Entamoeba histolytica, where actin forms the major cytoskeletal network. In this study we have identified the formin homologs encoded in the E. histolytica genome based on sequence analysis. Using multiple tools, we have analyzed the primary sequences of the eight E. histolytica formins and discovered three subsets: (i) E. histolytica formin-1 to -3 (Ehformin-1 to -3), (ii) Ehformin-4, and (iii) Ehformin-5 to -8. Two of these subsets (Ehformin-1 to -3 and Ehformin-4) showed significant sequence differences from their closest homologs, while Ehformin-5 to -8 were unique among all known formins. Since Ehformin-1 to -3 showed important sequence differences from Diaphanous-related formins (DRFs), we have studied the functions of Ehformin-1 and -2 in E. histolytica transformants. Like other DRFs, Ehformin-1 and -2 associated with F-actin in response to serum factors, in pseudopodia, in pinocytic and phagocytic vesicles, and at cell division sites. Ehformin-1 and -2 also localized with the microtubular assembly in the nucleus, indicating their involvement in genome segregation. While increased expression of Ehformin-1 and -2 did not affect phagocytosis or motility, it clearly showed an increase in the number of binucleated cells, the number of nuclei in multinucleated cells, and the average DNA content of each nucleus, suggesting that these proteins regulate both mitosis and cytokinesis in E. histolytica.

Item Type:Article
Source:Copyright of this article belongs to American Society for Microbiology.
ID Code:19500
Deposited On:22 Nov 2010 12:30
Last Modified:17 May 2016 04:02

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