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The overall objective of this application is to study the biochemical and immunological basis of demyelination in multiple sclerosis (MS) and experimental allergic encephalomyelitis (EAE), as well as the biochemical parameters affecting myelination and remyelination. Our emphasis is placed on the role of glycosphingolipids (GSLs) in these events. Since GSLs are localized primarily on the cell surface and are known to undergo cell- specific, developmentally regulated changes, they serve as excellent markers for monitoring cellular events occurring during myelination and demyelination. Their importance in this regard is further underscored by: (a) the discovery that there are unique glycolipid antigens common to the nervous system and the endothelial cells, and (b) certain GSLs are powerful modulators of immune cell growth and differentiation. In the first area of research, a major goal is to provide additional biochemical data on myelin breakdown, the associated gliotic reactions, and remyelination. This is facilitated by the development of several novel and highly sensitive procedures for analyzing specific cellular GSL components. Immunological research in MS has been extensive, and there is strong evidence that an autoimmune mechanism may play an important role in the pathogenesis of this disease. The autoantigen(s) that are involved in myelin and oligodendroglial degeneration in MS have not been clearly defined. We hypothesize that the inflammatory demyelination in MS and EAE may be triggered by autoreactive T cells specific for CNS myelin proteins and glycoconjugates, and by humoral response against target antigens specifically localized in endothelial cells and the CNS. The humoral response against the endothelium may account for the vascular permeability change preceding demyelination. This hypothesis will be tested employing in vitro and in vivo model systems. In the second area of research, we plan to focus on the synthesis of galactocerebrosides (GC) which are highly enriched in myelin. Since there are two types of GC, the possibility exists that they are synthesized by two distinct galactosyltransferases. We plan to purify these two enzymes and to study their subcellular localization, and to elucidate the regulation of the enzyme activities during development by molecular biological techniques. Since galactosyltransferases are apparently found in oligodendroglial plasma membrane and myelin, we propose that they may function as membrane adhesion molecules for the formation of the multilamellar structure of myelin. An understanding of the synthesis and function of galactocerebrosides should enhance our knowledge on factors modulating myelination and remyelination.
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Morphometric analysis of the developing optic nerve of the F1 heterotic mouse and its parental strains.
F1 杂种优势小鼠及其亲本品系发育中视神经的形态测量分析。
DOI: 10.1016/0304-3940(90)90828-w
发表时间: 1990
期刊: Neuroscience letters
影响因子: 2.5
作者: [Bigbee,JW, Yu,DS, Yu,RK]
通讯作者: Yu,RK
Modulation by glycosphingolipids of membrane-membrane interactions induced by myelin basic protein and melittin.
鞘糖脂对髓磷脂碱性蛋白和蜂毒肽诱导的膜-膜相互作用的调节。
DOI: 10.1016/0005-2736(92)90260-s
发表时间: 1992
期刊: Biochimica et biophysica acta
影响因子: --
作者: [Maggio,B, Yu,RK]
通讯作者: Yu,RK
Subcellular distribution of UDP-galactose:ceramide galactosyltransferase in rat brain oligodendroglia.
UDP-半乳糖:神经酰胺半乳糖基转移酶在大鼠脑少突胶质细胞中的亚细胞分布。
DOI: 10.1111/j.1471-4159.1988.tb02493.x
发表时间: 1988
期刊: Journal of neurochemistry
影响因子: 4.7
作者: [Sato,C, Black,JA, Yu,RK]
通讯作者: Yu,RK
Heterosis for myelin content is limited to the central nervous system.
髓磷脂含量的杂种优势仅限于中枢神经系统。
DOI: 10.1002/jnr.490190312
发表时间: 1988
期刊: Journal of neuroscience research
影响因子: 4.2
作者: [Miskimins,R, Yu,RK]
通讯作者: Yu,RK
6
    Glycolipids of Neural Stem Cells
    • 批准号:
      9447277
    • 项目类别:
    • 资助金额:
      $33.25万
    • 财政年份:
      2017
    • 负责人:
      Robert K. YU
    • 依托单位:
    Glycolipids of Neural Stem Cells
    • 批准号:
      10062520
    • 项目类别:
    • 资助金额:
      $33.25万
    • 财政年份:
      2017
    • 负责人:
      Robert K. YU
    • 依托单位:
    Effects of Gangliosides on Neural Stem Cells: Role in Neuroregeneration
    Effects of Gangliosides on Neural Stem Cells: Role in Neuroregeneration
    海外基金