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1
Growth as a solid tumor or reduced glucose concentrations in culture reversibly induce CD44-mediated hyaluronan recognition by Chinese hamster ovary cells.作为实体瘤生长或培养中葡萄糖浓度降低会可逆地诱导中国仓鼠卵巢细胞通过CD44介导识别透明质酸。
J Clin Invest. 1997 Sep 1;100(5):1217-29. doi: 10.1172/JCI119635.
2
Glycosylation of CD44 negatively regulates its recognition of hyaluronan.CD44的糖基化负向调节其对透明质酸的识别。
J Exp Med. 1995 Aug 1;182(2):419-29. doi: 10.1084/jem.182.2.419.
3
Site-specific de-N-glycosylation of CD44 can activate hyaluronan binding, and CD44 activation states show distinct threshold densities for hyaluronan binding.CD44的位点特异性去N-糖基化可激活透明质酸结合,且CD44的激活状态对透明质酸结合表现出不同的阈值密度。
Cancer Res. 1998 Aug 15;58(16):3736-42.
4
Glycosylation provides both stimulatory and inhibitory effects on cell surface and soluble CD44 binding to hyaluronan.糖基化对细胞表面及可溶性CD44与透明质酸的结合既有刺激作用,也有抑制作用。
J Cell Biol. 1998 Jan 26;140(2):431-46. doi: 10.1083/jcb.140.2.431.
5
Absence of functional CD44 hyaluronan receptor on human NMYC-amplified neuroblastoma cells.人NMYC扩增的神经母细胞瘤细胞上功能性CD44透明质酸受体的缺失。
Cancer Res. 1997 Apr 1;57(7):1387-93.
6
Perturbation of hyaluronan interactions by soluble CD44 inhibits growth of murine mammary carcinoma cells in ascites.可溶性CD44对透明质酸相互作用的干扰抑制小鼠乳腺癌细胞在腹水中的生长。
Am J Pathol. 2000 Jun;156(6):2159-67. doi: 10.1016/S0002-9440(10)65086-9.
7
Hyaluronan increases RANKL expression in bone marrow stromal cells through CD44.透明质酸通过CD44增加骨髓基质细胞中RANKL的表达。
J Bone Miner Res. 2005 Jan;20(1):30-40. doi: 10.1359/JBMR.041014. Epub 2004 Oct 18.
8
CD44 expression on activated B cells. Differential capacity for CD44-dependent binding to hyaluronic acid.活化B细胞上的CD44表达。CD44依赖性结合透明质酸的差异能力。
J Immunol. 1993 Dec 15;151(12):6712-22.
9
TNFalpha and IL-4 regulation of hyaluronan binding to monocyte CD44 involves posttranslational modification of CD44.肿瘤坏死因子α和白细胞介素-4对透明质酸与单核细胞CD44结合的调节涉及CD44的翻译后修饰。
Cell Immunol. 1999 May 1;193(2):209-18. doi: 10.1006/cimm.1999.1456.
10
Expression levels and functional aspects of the hyaluronan receptor CD44. Effects of insulin, glucose, IGF-I, or growth hormone on human arterial smooth muscle cells.透明质酸受体CD44的表达水平及功能方面。胰岛素、葡萄糖、胰岛素样生长因子-I或生长激素对人动脉平滑肌细胞的影响。
Metabolism. 2005 Mar;54(3):287-95. doi: 10.1016/j.metabol.2004.09.007.

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1
CD44 Glycosylation as a Therapeutic Target in Oncology.CD44糖基化作为肿瘤治疗靶点
Front Oncol. 2022 Jul 21;12:883831. doi: 10.3389/fonc.2022.883831. eCollection 2022.
2
N-Glycosylation can selectively block or foster different receptor-ligand binding modes.N-糖基化可以选择性地阻断或促进不同的受体-配体结合模式。
Sci Rep. 2021 Mar 4;11(1):5239. doi: 10.1038/s41598-021-84569-z.
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Cellular O-Glycome Reporter/Amplification to explore O-glycans of living cells.细胞O-聚糖报告/扩增技术用于探索活细胞的O-聚糖。
Nat Methods. 2016 Jan;13(1):81-6. doi: 10.1038/nmeth.3675. Epub 2015 Nov 30.
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Gas6-axl receptor signaling is regulated by glucose in vascular smooth muscle cells.Gas6-axl受体信号传导在血管平滑肌细胞中受葡萄糖调节。
Arterioscler Thromb Vasc Biol. 2008 May;28(5):886-91. doi: 10.1161/ATVBAHA.108.162693. Epub 2008 Feb 21.
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Insulin-regulated increase of soluble vascular adhesion protein-1 in diabetes.糖尿病中胰岛素调节的可溶性血管黏附蛋白-1增加。
Am J Pathol. 2002 Dec;161(6):2255-62. doi: 10.1016/S0002-9440(10)64501-4.
6
CD44 expression and hyaluronic acid binding of malignant glioma cells.恶性胶质瘤细胞的CD44表达与透明质酸结合
Clin Exp Metastasis. 1999 Feb;17(1):71-6. doi: 10.1023/a:1026425519497.

本文引用的文献

1
Differential expression of LacdiNAc sequences (GalNAc beta 1-4GlcNAc-R) in glycoproteins synthesized by Chinese hamster ovary and human 293 cells.中国仓鼠卵巢细胞和人293细胞合成的糖蛋白中LacdiNAc序列(GalNAcβ1-4GlcNAc-R)的差异表达。
Glycobiology. 1997 Mar;7(2):183-94. doi: 10.1093/glycob/7.2.183.
2
Identification of a 175 kDa protein as the ligand-binding subunit of the rat liver sinusoidal endothelial cell hyaluronan receptor.鉴定一种175 kDa蛋白为大鼠肝窦内皮细胞透明质酸受体的配体结合亚基。
Glycobiology. 1997 Feb;7(1):15-21. doi: 10.1093/glycob/7.1.15.
3
Solution structure of the link module: a hyaluronan-binding domain involved in extracellular matrix stability and cell migration.连接模块的溶液结构:一个参与细胞外基质稳定性和细胞迁移的透明质酸结合结构域。
Cell. 1996 Sep 6;86(5):767-75. doi: 10.1016/s0092-8674(00)80151-8.
4
Structures of the O-glycans on P-selectin glycoprotein ligand-1 from HL-60 cells.HL-60细胞来源的P-选择素糖蛋白配体-1上O-聚糖的结构
J Biol Chem. 1996 Aug 2;271(31):18732-42. doi: 10.1074/jbc.271.31.18732.
5
The protein fold of the hyaluronate-binding proteoglycan tandem repeat domain of link protein, aggrecan and CD44 is similar to that of the C-type lectin superfamily.连接蛋白、聚集蛋白聚糖和CD44的透明质酸结合蛋白聚糖串联重复结构域的蛋白质折叠与C型凝集素超家族相似。
FEBS Lett. 1996 Jun 17;388(2-3):211-6. doi: 10.1016/0014-5793(96)00576-5.
6
Keratan sulfate modification of CD44 modulates adhesion to hyaluronate.硫酸角质素对CD44的修饰作用可调节其与透明质酸的黏附。
J Biol Chem. 1996 Apr 19;271(16):9490-6. doi: 10.1074/jbc.271.16.9490.
7
Glycosylation of CD44 is implicated in CD44-mediated cell adhesion to hyaluronan.CD44的糖基化与CD44介导的细胞与透明质酸的黏附有关。
J Cell Biol. 1996 Mar;132(6):1199-208. doi: 10.1083/jcb.132.6.1199.
8
CD44 hyaluronate binding influences growth kinetics and tumorigenicity of human colon carcinomas.CD44 与透明质酸的结合影响人类结肠癌的生长动力学和致瘤性。
Oncogene. 1995 Dec 7;11(11):2223-32.
9
In vitro culture of human peripheral blood monocytes induces hyaluronan binding and up-regulates monocyte variant CD44 isoform expression.人外周血单核细胞的体外培养可诱导透明质酸结合并上调单核细胞变异型CD44同工型的表达。
J Immunol. 1996 Feb 15;156(4):1557-65.
10
Receptor-ligand interaction between CD44 and osteopontin (Eta-1).CD44与骨桥蛋白(Eta-1)之间的受体-配体相互作用。
Science. 1996 Jan 26;271(5248):509-12. doi: 10.1126/science.271.5248.509.

作为实体瘤生长或培养中葡萄糖浓度降低会可逆地诱导中国仓鼠卵巢细胞通过CD44介导识别透明质酸。

Growth as a solid tumor or reduced glucose concentrations in culture reversibly induce CD44-mediated hyaluronan recognition by Chinese hamster ovary cells.

作者信息

Zheng Z, Cummings R D, Pummill P E, Kincade P W

机构信息

Oklahoma Medical Research Foundation, Oklahoma City, Oklahoma 73104, USA.

出版信息

J Clin Invest. 1997 Sep 1;100(5):1217-29. doi: 10.1172/JCI119635.

DOI:10.1172/JCI119635
PMID:9276740
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC508299/
Abstract

The density, molecular isoform, and posttranslational modifications of CD44 can markedly influence growth and metastatic behavior of tumors. Many CD44 functions, including some involving tumors, have been attributed to its ability to recognize hyaluronan (HA). However, only certain CD44-bearing cells bind soluble or immobilized HA. We now show that CD44 made by wild-type Chinese hamster ovary (CHO-K1) cells and a ligand-binding subclone differ with respect to N-linked glycosylation. While both bear CD44 with highly branched, complex-type glycoforms, CD44 expressed by the wild type was more extensively sialylated. CHO-K1 cells which failed to recognize HA when grown in culture gained this ability when grown as a solid tumor and reverted to a non-HA-binding state when returned to culture. The ability of CHO-K1 cells to recognize HA was also reversibly induced when glucose concentrations in the medium were reduced. Glucose restriction influenced CD44-mediated HA binding by many but not all, of a series of murine tumors. Glucose concentrations and glycosylation inhibitors only partially influenced CD44 receptor function on resting murine B lymphocytes. These observations suggest that glucose levels or other local environmental conditions may markedly influence glycosylation pathways used by some tumor cells, resulting in dramatic alteration of CD44-mediated functions.

摘要

CD44的密度、分子异构体和翻译后修饰可显著影响肿瘤的生长和转移行为。许多CD44的功能,包括一些与肿瘤相关的功能,都归因于其识别透明质酸(HA)的能力。然而,只有某些表达CD44的细胞能结合可溶性或固定化的HA。我们现在发现,野生型中国仓鼠卵巢(CHO-K1)细胞产生的CD44与一个配体结合亚克隆在N-连接糖基化方面存在差异。虽然两者都带有具有高度分支的复杂型糖型的CD44,但野生型表达的CD44唾液酸化程度更高。在培养中无法识别HA的CHO-K1细胞,在形成实体瘤生长时获得了这种能力,而回到培养状态时又恢复到非HA结合状态。当培养基中的葡萄糖浓度降低时,CHO-K1细胞识别HA的能力也可被可逆性诱导。葡萄糖限制影响了一系列鼠肿瘤中许多(但不是全部)由CD44介导的HA结合。葡萄糖浓度和糖基化抑制剂仅部分影响静息鼠B淋巴细胞上的CD44受体功能。这些观察结果表明,葡萄糖水平或其他局部环境条件可能显著影响一些肿瘤细胞所使用的糖基化途径,从而导致CD44介导的功能发生显著改变。