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1
Ligand-induced movement of lymphocyte membrane macromolecules. II. Mapping of surface moieties.配体诱导的淋巴细胞膜大分子运动。II. 表面部分的图谱绘制。
J Exp Med. 1972 Oct 1;136(4):907-30. doi: 10.1084/jem.136.4.907.
2
Ligand-induced movement of lymphocyte membrane macromolecules. I. Analysis by immunofluorescence and ultrastructural radioautography.配体诱导的淋巴细胞膜大分子运动。I. 免疫荧光和超微结构放射自显影分析。
J Exp Med. 1972 Oct 1;136(4):885-906. doi: 10.1084/jem.136.4.885.
3
Mapping and migration of lymphocyte surface macromolecules.淋巴细胞表面大分子的定位与迁移
Fed Proc. 1973 Jan;32(1):55-9.
4
Non-random distribution of surface immunoglobulins on murine B lymphocytes.小鼠B淋巴细胞表面免疫球蛋白的非随机分布。
J Immunol. 1975 Apr;114(4):1197-204.
5
Immunoglobulin and other surface antigens of cells of the immune system.免疫系统细胞的免疫球蛋白及其他表面抗原。
J Exp Med. 1971 Oct 1;134(4):815-32. doi: 10.1084/jem.134.4.815.
6
Antigen binding to lymphoid cells from unimmunized mice. II. High frequency of antigen-binding cells for several protein antigens by a morphologically distinct Ig-bearing population of T- and B-lymphocytes.抗原与未免疫小鼠的淋巴细胞结合。II. 由形态学上不同的携带免疫球蛋白的T淋巴细胞和B淋巴细胞群体对几种蛋白质抗原具有高频抗原结合细胞。
Cell Immunol. 1975 Aug;18(2):255-73. doi: 10.1016/0008-8749(75)90056-8.
7
Hybrid antibody-induced topographical redistribution of surface immunoglobulins, alloantigens, and concanavalin A receptors on mouse lymphoid cells.杂交抗体诱导小鼠淋巴细胞表面免疫球蛋白、同种异体抗原和伴刀豆球蛋白A受体的拓扑重分布。
Proc Natl Acad Sci U S A. 1974 Mar;71(3):932-6. doi: 10.1073/pnas.71.3.932.
8
Ligand-induced movement of lymphocyte membrane macromolecules. 3. Relationship between the formation and fate of anti-Ig-surface Ig complexes and cell metabolism.配体诱导的淋巴细胞膜大分子运动。3. 抗Ig-表面Ig复合物的形成与命运和细胞代谢之间的关系。
J Exp Med. 1973 Mar 1;137(3):675-89. doi: 10.1084/jem.137.3.675.
9
Immunoglobulins on the surface of lymphocytes. II. The bone marrow as the main source of lymphocytes with detectable surface-bound immunoglobulin.淋巴细胞表面的免疫球蛋白。II. 骨髓作为具有可检测到的表面结合免疫球蛋白的淋巴细胞的主要来源。
J Exp Med. 1971 Jun 1;133(6):1188-98. doi: 10.1084/jem.133.6.1188.
10
Blocking and redistribution ("capping") of antigen receptors on T and B lymphocytes by anti-immunoglobulin antibody.抗免疫球蛋白抗体对T和B淋巴细胞上抗原受体的封闭与再分布(“帽化”)
J Exp Med. 1973 Apr 1;137(4):1060-77. doi: 10.1084/jem.137.4.1060.

引用本文的文献

1
Iron-dextran antibody conjugates: General method for simultaneous staining of two components in high-resolution immunoelectron microscopy.铁葡聚糖抗体偶联物:高分辨率免疫电子显微镜中同时对两种成分进行染色的通用方法。
Proc Natl Acad Sci U S A. 1979 Jul;76(7):3392-6. doi: 10.1073/pnas.76.7.3392.
2
Aluminum-induced alteration of surface anionic sites in cultured brain microvascular endothelial cells.铝诱导培养的脑微血管内皮细胞表面阴离子位点的改变。
Acta Neuropathol. 1993;86(4):371-7. doi: 10.1007/BF00369450.
3
Distribution of immunoglobulin G receptors in the small intestine of the young rat.幼鼠小肠中免疫球蛋白G受体的分布
J Cell Biol. 1980 Apr;85(1):18-32. doi: 10.1083/jcb.85.1.18.
4
Schistosomula of Schistosoma mansoni clear concanavalin A from their surface by sloughing.曼氏血吸虫的童虫通过蜕皮从其表面清除伴刀豆球蛋白A。
J Cell Biol. 1982 Aug;94(2):355-62. doi: 10.1083/jcb.94.2.355.
5
Augmentation of antibody-dependent cell-mediated cytotoxicity by anti-immunoglobulin. I. Relationship to target cell capping.抗免疫球蛋白增强抗体依赖性细胞介导的细胞毒性。I. 与靶细胞封帽的关系。
Clin Exp Immunol. 1980 Oct;42(1):127-35.
6
Metastatic tumor cell invasion of brain organ tissue cultured on cellulose polyacetate strips.转移性肿瘤细胞对在醋酸纤维素条上培养的脑器官组织的侵袭。
Clin Exp Metastasis. 1983 Oct-Dec;1(4):327-39. doi: 10.1007/BF00121195.
7
Decoration with myosin subfragment-1 disrupts contacts between microfilaments and the cell membrane in isolated Dictyostelium cortices.用肌球蛋白亚片段-1进行修饰会破坏分离的盘基网柄菌皮层中微丝与细胞膜之间的接触。
J Cell Biol. 1984 Oct;99(4 Pt 1):1434-40. doi: 10.1083/jcb.99.4.1434.
8
Thrombin-induced platelet membrane glycoprotein IIb and IIIa complex formation. An electron microscope study.凝血酶诱导的血小板膜糖蛋白IIb和IIIa复合物形成。一项电子显微镜研究。
J Exp Med. 1981 Oct 1;154(4):1058-68. doi: 10.1084/jem.154.4.1058.
9
Cells bearing Ia antigens in the murine thymus. An ultrastructural study.小鼠胸腺中携带Ia抗原的细胞。一项超微结构研究。
Am J Pathol. 1983 Apr;111(1):88-97.
10
5'-Nucleotidase activity in lymphocytes.淋巴细胞中的5'-核苷酸酶活性。
Histochem J. 1981 Jul;13(4):525-34. doi: 10.1007/BF01002708.

本文引用的文献

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Protein measurement with the Folin phenol reagent.使用福林酚试剂进行蛋白质测定。
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2
Preparation of antibody-ferritin conjugates for immunoelectron microscopy.用于免疫电子显微镜的抗体-铁蛋白偶联物的制备。
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3
The interaction of concanavalin A with methyl alpha-D-glucopyranoside.伴刀豆球蛋白A与α-D-甲基吡喃葡萄糖苷的相互作用。
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Cell surface antigens: serial sectioning of single cells as an approach to topographical analysis.细胞表面抗原:单细胞连续切片作为一种地形分析方法。
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Antigenic structure of cell surfaces. An immunoferritin study of the occurrence and topography of H-2' theta, and TL alloantigens on mouse cells.细胞表面的抗原结构。关于小鼠细胞上H-2'θ和TL同种异体抗原的出现及定位的免疫铁蛋白研究。
J Exp Med. 1969 Nov 1;130(5):979-1001. doi: 10.1084/jem.130.5.979.
6
Structure of soncanavalin A at 4 A resolution.分辨率为4埃的伴刀豆球蛋白A结构。
Proc Natl Acad Sci U S A. 1971 Aug;68(8):1853-7. doi: 10.1073/pnas.68.8.1853.
7
Structure of concanavalin A at 4.25-ångström resolution.伴刀豆球蛋白A在4.25埃分辨率下的结构
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8
Coupling of enzymes to proteins with glutaraldehyde. Use of the conjugates for the detection of antigens and antibodies.用戊二醛将酶与蛋白质偶联。偶联物用于抗原和抗体的检测。
Immunochemistry. 1969 Jan;6(1):43-52. doi: 10.1016/0019-2791(69)90177-3.
9
Immunochemical quantitation of antigens by single radial immunodiffusion.通过单向辐射免疫扩散法对抗原进行免疫化学定量。
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Histocompatibility antigens.组织相容性抗原
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配体诱导的淋巴细胞膜大分子运动。II. 表面部分的图谱绘制。

Ligand-induced movement of lymphocyte membrane macromolecules. II. Mapping of surface moieties.

作者信息

Karnovsky M J, Unanue E R, Leventhal M

出版信息

J Exp Med. 1972 Oct 1;136(4):907-30. doi: 10.1084/jem.136.4.907.

DOI:10.1084/jem.136.4.907
PMID:5056672
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2139269/
Abstract

Anti-immunoglobulin (Ig) coupled to ferritin or hemocyanin was used to map the distribution of Ig molecules on lymphocytes derived from bone marrow (B lymphocytes) by freeze-etching. The labeled anti-Ig was distributed all over the membrane in the form of random interconnected patches forming a lacy, continuous network. This was the pattern of lymphocytes labeled at 4 degrees C with the anti-Ig. After warming at 37 degrees C, the labeled molecules concentrated into a single area of the cell (forming the cap) and were rapidly internalized in small vesicles Freeze-etching showed close packing of the labeled molecules in the cap area. There was evidence that in the cap area the Ig molecules were exfoliated from the plane of the membrane, suggesting that the Ig may be superficial to the bilipid layer, or weakly anchored to the membrane. Similar studies were made using antibodies to histocompatibility antigens. Thymocytes were labeled with anti-H-2 and ferritin anti-Ig at 4 degrees C. Freeze-etching showed large patches scattered over the membrane and separated from each other by several thousand angstroms. This distribution may, in part, explain why H-2 antigens do not readily form a cap; the large patches are beyond the reach of even a double ligand (sandwich) reaction. The antigens that reacted with heterologous anti-lymphocyte globulin (ALG) were found in small noninterconnected clusters a few hundred angstroms apart. Such clusters presumably cannot be linked by a single antibody but can by a sandwich (ligand to ligand-antigen) reaction. In previous studies it was found that ALG antigens form a cap only after a sandwich reaction. Finally, the receptors for concanavalin A (Con A) were found in a lacy, irregular interconnected, random network. The spatial distribution of these moieties on the membrane may, in great part, determine their movement after reaction with one or two ligands.

摘要

将与铁蛋白或血蓝蛋白偶联的抗免疫球蛋白(Ig)用于通过冷冻蚀刻法绘制源自骨髓的淋巴细胞(B淋巴细胞)上Ig分子的分布。标记的抗Ig以随机相互连接的斑块形式分布在整个膜上,形成一个花边状的连续网络。这是在4℃下用抗Ig标记的淋巴细胞的模式。在37℃温育后,标记的分子集中到细胞的单个区域(形成帽),并迅速被内化到小泡中。冷冻蚀刻显示标记的分子在帽区域紧密堆积。有证据表明,在帽区域,Ig分子从膜平面脱落,这表明Ig可能位于双脂层表面,或者与膜的锚定较弱。使用针对组织相容性抗原的抗体进行了类似的研究。胸腺细胞在4℃下用抗H-2和铁蛋白抗Ig标记。冷冻蚀刻显示大的斑块散布在膜上,彼此相隔数千埃。这种分布可能部分解释了为什么H-2抗原不容易形成帽;大的斑块甚至超出了双配体(夹心)反应的范围。与异种抗淋巴细胞球蛋白(ALG)反应的抗原存在于相距几百埃的小的不相连的簇中。这样的簇大概不能通过单一抗体连接,但可以通过夹心(配体-配体-抗原)反应连接。在先前的研究中发现,ALG抗原仅在夹心反应后形成帽。最后,伴刀豆球蛋白A(Con A)的受体存在于一个花边状、不规则相互连接的随机网络中。这些部分在膜上的空间分布在很大程度上可能决定它们与一种或两种配体反应后的移动。