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BCC0 与 IMC32 和 IMC43 合作形成弓形虫必需的子芽组装复合物。

BCC0 collaborates with IMC32 and IMC43 to form the Toxoplasma gondii essential daughter bud assembly complex.

机构信息

Molecular Biology Institute, University of California, Los Angeles, California, United States of America.

Department of Biological Chemistry and Institute of Genomics and Proteomics, University of California, Los Angeles, California, United States of America.

出版信息

PLoS Pathog. 2024 Jul 18;20(7):e1012411. doi: 10.1371/journal.ppat.1012411. eCollection 2024 Jul.

Abstract

Toxoplasma gondii divides by endodyogeny, in which two daughter buds are formed within the cytoplasm of the maternal cell using the inner membrane complex (IMC) as a scaffold. During endodyogeny, components of the IMC are synthesized and added sequentially to the nascent daughter buds in a tightly regulated manner. We previously showed that the early recruiting proteins IMC32 and IMC43 form an essential daughter bud assembly complex which lays the foundation of the daughter cell scaffold in T. gondii. In this study, we identify the essential, early recruiting IMC protein BCC0 as a third member of this complex by using IMC32 as bait in both proximity labeling and yeast two-hybrid screens. We demonstrate that BCC0's localization to daughter buds depends on the presence of both IMC32 and IMC43. Deletion analyses and functional complementation studies reveal that residues 701-877 of BCC0 are essential for both its localization and function and that residues 1-899 are sufficient for function despite minor mislocalization. Pairwise yeast two-hybrid assays additionally demonstrate that BCC0's essential domain binds to the coiled-coil region of IMC32 and that BCC0 and IMC43 do not directly interact. This data supports a model for complex assembly in which an IMC32-BCC0 subcomplex initially recruits to nascent buds via palmitoylation of IMC32 and is locked into the scaffold once bud elongation begins by IMC32 binding to IMC43. Together, this study dissects the organization and function of a complex of three early recruiting daughter proteins which are essential for the proper assembly of the IMC during endodyogeny.

摘要

刚地弓形虫通过内发生分裂,即两个子芽在母细胞的细胞质内通过内膜复合体(IMC)作为支架形成。在内发生分裂过程中,IMC 的成分被合成并以严格调控的方式顺序添加到新形成的子芽中。我们之前的研究表明,早期募集蛋白 IMC32 和 IMC43 形成一个必不可少的子芽组装复合物,为刚地弓形虫的子细胞支架奠定基础。在这项研究中,我们通过在接近标记和酵母双杂交筛选中使用 IMC32 作为诱饵,确定了必不可少的早期募集 IMC 蛋白 BCC0 是该复合物的第三个成员。我们证明 BCC0 向子芽的定位取决于 IMC32 和 IMC43 的存在。缺失分析和功能互补研究表明,BCC0 的残基 701-877 对于其定位和功能都是必不可少的,而残基 1-899 尽管存在轻微的定位错误,但对于功能是足够的。成对的酵母双杂交实验还表明,BCC0 的必需结构域与 IMC32 的卷曲螺旋区结合,并且 BCC0 和 IMC43 之间没有直接相互作用。该数据支持一个复合物组装的模型,其中一个 IMC32-BCC0 亚复合物通过 IMC32 的棕榈酰化作用最初募集到新形成的芽上,一旦芽伸长开始,通过 IMC32 与 IMC43 结合,就被锁定在支架上。总之,这项研究剖析了三个早期募集子蛋白复合物的组织和功能,该复合物对于内发生分裂过程中 IMC 的正确组装是必不可少的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/29c9/11288415/f5592c40422b/ppat.1012411.g001.jpg

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