首页> 美国卫生研究院文献>Journal of Virology >Epstein-Barr virus recombinant molecular genetic analysis of the LMP1 amino-terminal cytoplasmic domain reveals a probable structural role with no component essential for primary B-lymphocyte growth transformation.
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Epstein-Barr virus recombinant molecular genetic analysis of the LMP1 amino-terminal cytoplasmic domain reveals a probable structural role with no component essential for primary B-lymphocyte growth transformation.

机译:对LMP1氨基末端胞质结构域的爱泼斯坦-巴尔病毒重组分子遗传分析显示可能的结构作用而初级B淋巴细胞生长转化没有必需的成分。

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摘要

Previous recombinant Epstein-Barr virus molecular genetic experiments with specifically mutated LMP1 genes indicate that LMP1 is essential for primary B-lymphocyte growth transformation and that the amino-terminal cytoplasmic and first transmembrane domains are together an important mediator of transformation. EBV recombinants with specific deletions in the amino-terminal cytoplasmic domain have now been constructed and tested for the ability to growth transform primary B lymphocytes into lymphoblastoid cell lines. Surprisingly, deletion of DNA encoding EHDLER or GPPLSSS from the full LMP1 amino-terminal cytoplasmic domain (MEHDLERGPPGPRRPPRGPPLSSS) had no discernible effect on primary B-lymphocyte transformation. These two motifs distinguish the LMP1 amino-terminal cytoplasmic domain from other arginine-rich membrane proximal sequences that anchor hydrophobic transmembrane domains. Two deletions which included the ERGPPGPRRPPR motif adversely affected but did not prevent transformation. This arginine- and proline-rich sequence is probably important in anchoring the first transmembrane domain in the plasma membrane, since these mutated LMP1s had altered stability and cell membrane localization. The finding that overlapping deletions of the entire amino-terminal cytoplasmic domain do not ablate transformation is most consistent with a model postulating that the transmembrane and carboxyl-terminal cytoplasmic domains are the likely biochemical effectors of transformation.
机译:先前使用特定突变的LMP1基因进行的重组爱泼斯坦-巴尔病毒分子遗传实验表明,LMP1对于原代B淋巴细胞的生长转化至关重要,而氨基末端的胞质域和第一个跨膜域共同是转化的重要介体。现在已经构建了在氨基末端细胞质结构域中具有特定缺失的EBV重组子,并测试了将原代B淋巴细胞转化为成淋巴细胞样细胞系的能力。令人惊讶的是,从完整的LMP1氨基末端胞质域(MEHDLERGPPGPRRPPRGPPLSSS)删除编码EHDLER或GPPLSSS的DNA对原代B淋巴细胞转化没有明显影响。这两个基序将LMP1氨基末端胞质结构域与锚定疏水跨膜结构域的其他富含精氨酸的膜近端序列区分开来。包括ERGPPGPRRPPR基序的两个缺失受到不利影响,但并未阻止转化。富含精氨酸和脯氨酸的序列可能对将第一个跨膜结构域锚定在质膜中很重要,因为这些突变的LMP1改变了稳定性和细胞膜定位。整个氨基末端细胞质结构域的重叠缺失不能消除转化的发现与一种模型最一致,该模型假定跨膜和羧基末端细胞质结构域是转化的可能生化效应子。

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