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C2 Domain Protein MIN1 Promotes Eyespot Organization in Chlamydomonas reinhardtii

机译:C2域蛋白MIN1促进莱茵衣藻眼点组织

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摘要

Assembly and asymmetric localization of the photosensory eyespot in the biflagellate, unicellular green alga Chlamydomonas reinhardtii requires coordinated organization of photoreceptors in the plasma membrane and pigment granule/thylakoid membrane layers in the chloroplast. min1 (mini-eyed) mutant cells contain abnormally small, disorganized eyespots in which the chloroplast envelope and plasma membrane are no longer apposed. The MIN1 gene, identified here by phenotypic rescue, encodes a protein with an N-terminal C2 domain and a C-terminal LysM domain separated by a transmembrane sequence. This novel domain architecture led to the hypothesis that MIN1 is in the plasma membrane or the chloroplast envelope, where membrane association of the C2 domain promotes proper eyespot organization. Mutation of conserved C2 domain loop residues disrupted association of the MIN1 C2 domain with the chloroplast envelope in moss cells but did not abolish eyespot assembly in Chlamydomonas. In min1 null cells, channelrhodopsin-1 (ChR1) photoreceptor levels were reduced, indicating a role for MIN1 in ChR1 expression and/or stability. However, ChR1 localization was only minimally disturbed during photoautotrophic growth of min1 cells, conditions under which the pigment granule layers are disorganized. The data are consistent with the hypothesis that neither MIN1 nor proper organization of the plastidic components of the eyespot is essential for localization of ChR1.
机译:在双鞭状,单细胞绿藻衣藻中,光感测眼点的组装和不对称定位要求在质膜中的感光体和叶绿体中的色素颗粒/类囊体膜层的协调组织。 min1(小眼)突变细胞包含异常小的,杂乱无章的眼点,其中不再放置叶绿体包膜和质膜。 MIN1基因在这里是通过表型拯救鉴定的,编码一种蛋白,该蛋白的N端C2域和C端LysM域被跨膜序列隔开。这种新颖的域结构导致了这样的假设,即MIN1位于质膜或叶绿体包膜中,其中C2域的膜缔合促进了适当的眼点组织。保守的C2域环残基的突变破坏了mos1细胞中MIN1 C2域与叶绿体包膜的结合,但并未消除衣藻眼点组装。在min1空细胞中,通道视紫红质1(ChR1)感光受体水平降低,表明MIN1在ChR1表达和/或稳定性中发挥了作用。然而,在min1细胞的光自养生长过程中,ChR1的定位仅受到最小程度的干扰,在这种条件下,颜料颗粒层变得杂乱无章。数据与以下假设一致:MIN1或点状点的质体成分的正确组织对于ChR1的定位都是必不可少的。

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