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1
Surface organization and composition of Euglena. II. Flagellar mastigonemes.眼虫的表面结构与组成。II. 鞭毛茸鞭。
J Cell Biol. 1978 Jun;77(3):805-26. doi: 10.1083/jcb.77.3.805.
2
Surface properties of the euglenoid flagellum.裸藻鞭毛的表面特性。
Symp Soc Exp Biol. 1982;35:381-97.
3
The Euglena paraflagellar rod: structure, relationship to other flagellar components and preliminary biochemical characterization.眼虫副鞭毛杆:结构、与其他鞭毛成分的关系及初步生化特征
J Cell Sci. 1982 Jun;55:199-210. doi: 10.1242/jcs.55.1.199.
4
The structure, origin, isolation, and composition of the tubular mastigonemes of the Ochromas flagellum.赭鞭毛虫鞭毛管状茸鞭的结构、起源、分离及组成
J Cell Biol. 1971 Aug;50(2):362-84. doi: 10.1083/jcb.50.2.362.
5
Flagellar membrane specializations and their relationship to mastigonemes and microtubules in Euglena gracilis.纤细裸藻鞭毛膜特化及其与鞭茸和微管的关系
J Cell Sci. 1982 Jun;55:115-35. doi: 10.1242/jcs.55.1.115.
6
Characterization and localization of a flagellar-specific membrane glycoprotein in Euglena.眼虫鞭毛特异性膜糖蛋白的表征与定位
J Cell Biol. 1980 Aug;86(2):424-35. doi: 10.1083/jcb.86.2.424.
7
Chlamydomonas flagella. I. Isolation and electrophoretic analysis of microtubules, matrix, membranes, and mastigonemes.衣藻鞭毛。I. 微管、基质、膜和茸鞭的分离及电泳分析。
J Cell Biol. 1972 Sep;54(3):507-39. doi: 10.1083/jcb.54.3.507.
8
Synthesis and mobilization of flagellar glycoproteins during regeneration in Euglena.眼虫再生过程中鞭毛糖蛋白的合成与动员
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The flagellar membrane of Ochromonas danica. Isolation and electrophoretic analysis of the flagellar membrane, axonemes, and mastigonemes.丹麦赭球藻的鞭毛膜。鞭毛膜、轴丝和茸鞭的分离及电泳分析。
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10
Extracellular microtubules. The origin, structure, and attachment of flagellar hairs in Fucus and Ascophyllum antherozoids.细胞外微管。墨角藻和泡叶藻雄配子鞭毛的起源、结构及附着情况。
J Cell Biol. 1969 Feb;40(2):446-60. doi: 10.1083/jcb.40.2.446.

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Glycosylated proteins in the protozoan alga Euglena gracilis: a proteomic approach.原核藻类眼虫糖基化蛋白:一种蛋白质组学方法。
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Antioxidant, Immunomodulatory and Potential Anticancer Capacity of Polysaccharides (Glucans) from Euglena gracilis G.A. Klebs.纤细裸藻(Euglena gracilis G.A. Klebs)多糖(葡聚糖)的抗氧化、免疫调节及潜在抗癌能力
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Chlamydomonas PKD2 organizes mastigonemes, hair-like glycoprotein polymers on cilia.眼虫 PKD2 组装基体,基体是纤毛上的发状糖蛋白聚合物。
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Exploring the Glycans of Euglena gracilis.探索纤细裸藻的聚糖。
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Kinematics of flagellar swimming in : Helical trajectories and flagellar shapes.鞭毛游动的运动学:螺旋轨迹和鞭毛形状。
Proc Natl Acad Sci U S A. 2017 Dec 12;114(50):13085-13090. doi: 10.1073/pnas.1708064114. Epub 2017 Nov 27.
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Fluorescent mannosides serve as acceptor substrates for glycosyltransferase and sugar-1-phosphate transferase activities in Euglena gracilis membranes.荧光甘露糖苷作为纤细裸藻膜中糖基转移酶和糖-1-磷酸转移酶活性的受体底物。
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Calcium sensors of ciliary outer arm dynein: functions and phylogenetic considerations for eukaryotic evolution.纤毛外臂动力蛋白的钙传感器:真核生物进化中的功能及系统发育考量
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J Cell Biol. 1980 May;85(2):258-72. doi: 10.1083/jcb.85.2.258.
10
Biochemical studies of the excitable membrane of Paramecium tetraurelia. III. Proteins of cilia and ciliary membranes.四膜虫可兴奋膜的生化研究。III. 纤毛和纤毛膜的蛋白质
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本文引用的文献

1
Aniline hydrogen phthalate as a spraying reagent for chromatography of sugars.邻苯二甲酸苯胺作为糖类色谱分析的喷雾试剂。
Nature. 1949 Sep 10;164(4167):443. doi: 10.1038/164443a0.
2
Detection of sugars on paper chromatograms.纸色谱上糖的检测
Nature. 1950 Sep 9;166(4219):444-5. doi: 10.1038/166444b0.
3
Flagellar regeneration in protozoan flagellates.原生动物鞭毛虫的鞭毛再生
J Cell Biol. 1967 Jul;34(1):345-64. doi: 10.1083/jcb.34.1.345.
4
The protein of human erythrocyte membranes. I. Preparation, solubilization, and partial characterization.人红细胞膜蛋白。I. 制备、增溶及部分特性鉴定
J Biol Chem. 1968 Apr 25;243(8):1985-92.
5
Glycoproteins: isolation from cellmembranes with lithium diiodosalicylate.糖蛋白:用二碘水杨酸锂从细胞膜中分离
Science. 1971 Dec 17;174(4015):1247-8. doi: 10.1126/science.174.4015.1247.
6
Nucleated assembly of microtubules in porcine brain extracts.猪脑提取物中微管的有核组装。
Science. 1972 Sep 29;177(4055):1196-7. doi: 10.1126/science.177.4055.1196.
7
Molecular weight estimation and separation of ribonucleic acid by electrophoresis in agarose-acrylamide composite gels.在琼脂糖-丙烯酰胺复合凝胶中通过电泳进行核糖核酸的分子量估计及分离
Biochemistry. 1968 Feb;7(2):668-74. doi: 10.1021/bi00842a023.
8
Selective solubilization of proteins and phospholipids from red blood cell membranes by nonionic detergents.非离子去污剂对红细胞膜中蛋白质和磷脂的选择性增溶作用。
J Supramol Struct. 1973;1(3):233-48. doi: 10.1002/jss.400010308.
9
Measurement of molecular weights by electrophoresis on SDS-acrylamide gel.通过在SDS-聚丙烯酰胺凝胶上进行电泳来测定分子量。
Methods Enzymol. 1972;26:3-27. doi: 10.1016/s0076-6879(72)26003-7.
10
Molecular biology of cellular membranes with applications to immunology.细胞膜的分子生物学及其在免疫学中的应用
Adv Immunol. 1974;19(0):1-66. doi: 10.1016/s0065-2776(08)60251-5.

眼虫的表面结构与组成。II. 鞭毛茸鞭。

Surface organization and composition of Euglena. II. Flagellar mastigonemes.

作者信息

Bouck G B, Rogalski A, Valaitis A

出版信息

J Cell Biol. 1978 Jun;77(3):805-26. doi: 10.1083/jcb.77.3.805.

DOI:10.1083/jcb.77.3.805
PMID:98532
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2110158/
Abstract

The surface of the Euglena flagellum is coated with about 30,000 fine filaments of two distinct types. The longer of these nontubular mastigonemes (about 3 micron) appear to be attached to the paraflagellar rod whereas the shorter nontubular mastigonemes (about 1.5 micron) are the centrifugally arranged portions of a larger complex, which consists of an attached unit parallel to and outside of the flagellar membrane. Units are arranged laternally in near registration and longitudinally overlap by one-half of a unit length. Rows of mastigoneme units are firmly attached to the axoneme microtubules or to the paraflagellar rod as evidenced by their persistence after removal of the flagellar membrane with neutral detergents. SDS-acrylamide gels of whole flagella revealed about 30 polypeptides, of which two gave strong positive staining with the periodic acid-Schiff (PAS) procedure. At least one of these two bands (glycoproteins) has been equated with the surface mastigonemes by parallel analysis of isolated and purified mastigonemes, particularly after phenol extraction. The faster moving glycoprotein has been selectively removed from whole flagella and from the mastigoneme fraction with low concentrations of neutral detergents at neutral or high pH. The larger glycoprotein was found to be polydisperse when electrophoresed through 1% agarose/SDS gels. Thin-layer chromatography of hydrolysates of whole flagella or of isolated mastigonemes has indicated that the major carbohydrate moiety is the pentose sugar, xylose, with possibly a small amount of glucose and an unknown minor component.

摘要

眼虫鞭毛的表面覆盖着约30000根两种不同类型的细丝。这些非管状的长鞭茸(约3微米)似乎附着在副鞭毛杆上,而较短的非管状鞭茸(约1.5微米)是一个更大复合体的离心排列部分,该复合体由一个平行于鞭毛膜并在其外侧的附着单元组成。这些单元横向排列接近对齐,纵向重叠半个单元长度。鞭茸单元行牢固地附着在轴丝微管或副鞭毛杆上,用中性去污剂去除鞭毛膜后它们依然存在就证明了这一点。完整鞭毛的SDS-聚丙烯酰胺凝胶显示约有30种多肽,其中两种经高碘酸-希夫(PAS)法染色呈强阳性。通过对分离和纯化的鞭茸进行平行分析,尤其是在苯酚提取后,这两条带中的至少一条(糖蛋白)已被确定与表面鞭茸相对应。在中性或高pH值下,用低浓度的中性去污剂已从完整鞭毛和鞭茸组分中选择性地去除了迁移速度较快的糖蛋白。当通过1%琼脂糖/SDS凝胶进行电泳时,发现较大的糖蛋白具有多分散性。完整鞭毛或分离鞭茸水解产物的薄层色谱分析表明,主要的碳水化合物部分是戊糖木糖,可能还有少量葡萄糖和一种未知的次要成分。