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早期分歧真菌Circinelloides mucor 缺乏着丝粒组蛋白 CENP-A 并表现出点状和区域性着丝粒的镶嵌。

Early Diverging Fungus Mucor circinelloides Lacks Centromeric Histone CENP-A and Displays a Mosaic of Point and Regional Centromeres.

机构信息

Department of Genetics and Microbiology, Faculty of Biology, University of Murcia, Murcia 30100, Spain.

Molecular Biology and Genetics Unit, Jawaharlal Nehru Centre for Advanced Scientific Research, Jakkur, Bangalore 560064, India.

出版信息

Curr Biol. 2019 Nov 18;29(22):3791-3802.e6. doi: 10.1016/j.cub.2019.09.024. Epub 2019 Oct 31.

DOI:10.1016/j.cub.2019.09.024
PMID:31679929
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6925572/
Abstract

Centromeres are rapidly evolving across eukaryotes, despite performing a conserved function to ensure high-fidelity chromosome segregation. CENP-A chromatin is a hallmark of a functional centromere in most organisms. Due to its critical role in kinetochore architecture, the loss of CENP-A is tolerated in only a few organisms, many of which possess holocentric chromosomes. Here, we characterize the consequence of the loss of CENP-A in the fungal kingdom. Mucor circinelloides, an opportunistic human pathogen, lacks CENP-A along with the evolutionarily conserved CENP-C but assembles a monocentric chromosome with a localized kinetochore complex throughout the cell cycle. Mis12 and Dsn1, two conserved kinetochore proteins, were found to co-localize to a short region, one in each of nine large scaffolds, composed of an ∼200-bp AT-rich sequence followed by a centromere-specific conserved motif that echoes the structure of budding yeast point centromeres. Resembling fungal regional centromeres, these core centromere regions are embedded in large genomic expanses devoid of genes yet marked by Grem-LINE1s, a novel retrotransposable element silenced by the Dicer-dependent RNAi pathway. Our results suggest that these hybrid features of point and regional centromeres arose from the absence of CENP-A, thus defining novel mosaic centromeres in this early-diverging fungus.

摘要

着丝粒在真核生物中快速进化,尽管它们执行着确保高保真染色体分离的保守功能。CENP-A 染色质是大多数生物中功能正常着丝粒的标志。由于其在动粒结构中的关键作用,只有少数生物能够容忍 CENP-A 的缺失,其中许多生物拥有全染色体着丝粒。在这里,我们描述了真菌界中 CENP-A 缺失的后果。腐生菌弯孢霉,一种机会性病原体,缺乏 CENP-A 以及进化上保守的 CENP-C,但组装了一个单着丝粒染色体,在整个细胞周期中具有局部的动粒复合物。保守的 Mis12 和 Dsn1 两个动粒蛋白被发现共同定位于一个短区域,每个区域由九个大型支架中的一个组成,由一个约 200bp 的富含 AT 的序列组成,其后是一个与出芽酵母点状着丝粒结构相呼应的着丝粒特异性保守基序。这些核心着丝粒区域类似于真菌的区域着丝粒,嵌入在缺乏基因的大片基因组中,但被 Grem-LINE1 标记,这是一种新的逆转座元件,被依赖 Dicer 的 RNAi 途径沉默。我们的结果表明,这些点状和区域着丝粒的混合特征是由于 CENP-A 的缺失而产生的,因此在这个早期分化的真菌中定义了新的镶嵌着丝粒。

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