澳门赌场招聘-赌场有哪些_免费百家乐追号软件_全讯网最新资讯网址 (中国)·官方网站

Research News

The first centriolar linker specific protein (BBLP) was discovered in human pathogen of Trypanosoma brucei

Source: School of Life Sciences
Edited by: Tan Rongyu, Wang Dongmei

Centrioles and basal bodies (BBs) are found in physically linked pairs, and in mammalian cells inter-centriole connections (G1-G2 Tether and S-M Linker) regulate centriole duplication and function [Dawe et al., 2007; Nigg and Stearns, 2011]. Studies have revealed essential components of the Tether whilst Linker components remain largely unknown [Fang et al., 2014; Xia et al., 2018].

Trypanosoma brucei, the pathogen of human African trypanosomiasis (sleeping sickness) distributes mainly in Africa. A large number of biological characteristics, for instance the BBs are not associated with the spindle and function in flagellum/cilia nucleation with an additional role in mitochondrial genome (kDNA) segregation [Robinson and Gull, 1991], which have made T. brucei an excellent model for centrosome studies.

BBLP, a novel BB/pro-Basal Body (pBB) linker protein in T. brucei was identified and predicted to be a large coiled-coil protein conserved in the kinetoplastida. Co-localization with the centriole marker SAS6 showed that BBLP localizes between the BB/pBB pair, throughout the cell cycle, with a stronger signal in the old flagellum BB/pBB pair. Importantly, RNAi depletion of BBLP leads to a conspicuous splitting of the BB/pBB pair associated only with the new flagellum (Figure 1). BBLP RNAi is lethal in the bloodstream form of the parasite, and perturbs mitochondrial kDNA inheritance. Immunogold labelling confirmed that BBLP is localized to a cytoskeletal component of the BB/pBB Linker, and tagged protein induction showed that BBLP is incorporated de novo in both new and old flagella BB pairs of dividing cells.


Figure 1, Early phenotype of BBLP RNAi. (A) As early as 8 hour after induction of BBLP RNAi. B) Transmission electron microscopy analysis of serial sections of an induced cell. C) Quantification of the BB splitting phenotype at different times post-induction of BBLP RNAi.

In addition, two aspects of CBB disengagement – loss of orthogonal orientation and ability to separate and move apart – are consistent, but separable events in evolutionarily diverse eukaryotic cells. Therefore, a unifying model explaining centriole/BB linkage differences between such cells were provided (Figure 2), which reveals how aspects of centriole/BB ontogeny and lineage can operate at different points of the cell cycle in evolutionarily diverse cells.

 
Figure 2, Models of centriole and basal body Linker in mammalian and trypanosome cell cycles. 1 and 2, parent centrioles (basal bodies); 3 and 4, pro-centrioles (pro-basal bodies); Linker is indicated in red.

This work is done based on a long term collaboration with Professor Keith Gull CBE DSc(Hon) FRS FMedSci FSB from the Oxford University, and Researcher Flavia Moreira-Leite from the Oxford Brookes University in the United Kingdom, Dr. De-Hua Lai’s group from the School of Life Sciences at Sun Yat-sen University published their results in a peer review journal PNAS with the entitled " A specific basal body linker protein provides the connection function for basal body inheritance in trypanosomes [Lai et al., 2021]. This work was funded by grants from the National Natural Science Foundation of China [31402029 and 31772445 to D.-H.L.]; Natural Science Foundation of Guangdong Province [2014A030313164 and 2016A030306048 to D.-H.L.] D.-H.L. was a Marie Curie fellow supported by PIIF-GA-2009-252589. Work in K.G.’s laboratory was supported by the Wellcome Trust grants [WT066839MA] and [104627/Z/14/Z].

References:
Dawe HR, Farr H, & Gull K (2007) Centriole/basal body morphogenesis and migration during ciliogenesis in animal cells. J Cell Sci 120(Pt 1):7–15.
Fang GL, et al. (2014) Centlein mediates an interaction between C-Nap1 and Cep68 to maintain centrosome cohesion. J Cell Sci 127(8):1631–1639.
Lai DH, Moreira-Leite F, Xu ZS, Yang J, Gull K (2021) A specific basal body linker protein provides the connection function for basal body inheritance in trypanosomes. Proc Natl Acad Sci USA 118(8): e2014040118.
Nigg EA & Stearns T (2011) The centrosome cycle: Centriole biogenesis, duplication and inherent asymmetries. Nat Cell Biol 13(10):1154–1160.
Robinson DR & Gull K (1991) Basal body movements as a mechanism for mitochondrial genome segregation in the trypanosome cell cycle. Nature 352(6337):731–733.
Xia Y, et al. (2018) CCDC102B functions in centrosome linker assembly and centrosome cohesion. J Cell Sci 131(23):jcs222901.

Link to the paper: https://doi.org/10.1073/pnas.2014040118
欧洲百家乐官网的玩法技巧和规则 | 新锦江百家乐娱乐| 盈禾娱乐场| 涂山百家乐官网的玩法技巧和规则 | 太阳城橙翠园| 百家乐官网太阳城| 大发888娱乐英皇国际| 菲彩百家乐官网的玩法技巧和规则 | 林芝县| 博天堂百家乐官网的玩法技巧和规则| 百家乐的规则博彩正网| 乐宝百家乐官网游戏| 百家乐官网赌场博彩赌场网| 威尼斯人娱乐城投注网| 阳宅24山流年吉凶方位| 伯爵百家乐娱乐场| 新世纪百家乐官网现金网| 全讯网导航| 风水24山代表什么意思| 新闻| 大发888博彩论坛贴吧| 实战百家乐官网的玩法技巧和规则 | 百家乐官网国际娱乐平台| 百家乐官网神算子| 皇冠网遮天小说| 大发888游戏平台188| 百家乐大娱乐场开户注册| 普兰店市| 全讯网ceo| 百家乐网站排行| 皇冠百家乐官网客户端皇冠| 澳门百家乐官网赌场娱乐网规则| 帝豪娱乐城| 百家乐娱乐平台会员注册| 金博士百家乐官网的玩法技巧和规则 | 合法赌博网站| 百家乐5式直缆投注法| 百家乐官网的必赢方法| 大发888注册奖金| 澳门百家乐先赢后输| 百家乐官网路子技巧|