Otten G R, Bikoff E, Ribaudo R K, Kozlowski S, Margulies D H, Germain R N
Lymphocyte Biology Section, National Institute of Allergy and Infectious Disease, National Institutes of Health, Bethesda, MD 20892.
J Immunol. 1992 Jun 15;148(12):3723-32.
We have examined the roles of peptide and beta 2-microglobulin (beta 2m) in regulating the conformation and expression level of class I molecules on the cell surface. Using a cell line synthesizing H-2Dd H chain and mouse beta 2m but defective in endogenous peptide loading, we demonstrate the ability of either exogenous peptide or beta 2m alone to increase surface H-2Dd expression at both 25 degrees C and 37 degrees C. Peptide and beta 2m show marked synergy in their abilities to increase surface class I expression, with minimal increases promoted by peptide in the absence of free beta 2m. Low temperature-induced molecules have indistinguishable rates of loss of beta 2m and alpha 1/alpha 2 domain conformational epitopes during culture at 37 degrees C. However, the rate of alpha 3 epitope loss is much slower, indicating a minimum of two steps in class I loss from the cell surface: 1) loss of beta 2m binding to H chain and unfolding of the alpha 1/alpha 2 region; then 2) denaturation, degradation, or internalization of the free H chains possessing alpha 3 epitopes. These data show for the first time that free H chains survive for a finite time on the membrane in a form capable of refolding into alpha 1/alpha 2 epitope positive molecules upon addition of beta 2m and peptide. This refolding in the presence of beta 2m and peptide can explain the reported requirement for both components in sensitizing cells for class I-dependent CTL lysis. It also indicates that such conformational changes in class I molecules are not strictly dependent on either newly synthesized H chains or on intracellular chaperons. The study of H chain-peptide-beta 2m interaction on the cell surface may be relevant to understanding intracellular peptide loading events.
我们研究了肽和β2-微球蛋白(β2m)在调节细胞表面I类分子构象和表达水平中的作用。利用一种合成H-2Dd重链和小鼠β2m但内源性肽装载有缺陷的细胞系,我们证明了外源性肽或单独的β2m在25℃和37℃时均有增加表面H-2Dd表达的能力。肽和β2m在增加表面I类表达的能力上显示出显著的协同作用,在没有游离β2m的情况下,肽促进的增加最小。低温诱导的分子在37℃培养期间β2m和α1/α2结构域构象表位的丢失率没有区别。然而,α3表位的丢失率要慢得多,这表明I类分子从细胞表面丢失至少有两个步骤:1)β2m与重链结合的丢失以及α1/α2区域的展开;然后2)具有α3表位的游离重链的变性、降解或内化。这些数据首次表明,游离重链以一种能够在添加β2m和肽后重新折叠成α1/α2表位阳性分子的形式在膜上存活有限的时间。在β2m和肽存在下的这种重新折叠可以解释报道的在使细胞对I类依赖性CTL裂解敏感时对这两种成分的需求。这也表明I类分子中的这种构象变化并不严格依赖于新合成的重链或细胞内伴侣蛋白。对细胞表面重链-肽-β2m相互作用的研究可能与理解细胞内肽装载事件有关。