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Important Functional Roles of Basigin in Thymocyte Development and T cell Activation

机译:Basigin在胸腺细胞发育和T细胞活化中的重要功能作用

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Basigin is a highly glycosylated transmembrane protein that is expressed in a broad range of tissues and is involved in a number of physiological and pathological processes. However, the in vivo role of basigin remains unknown. To better understand the physiological and pathological functions of basigin in vivo, we generated a conditional null allele by introducing two loxP sites flanking exons 2 and 7 of the basigin gene (Bsg). Bsgfl/fl mice were born at the expected Mendelian ratio and showed a similar growth rate compared with wildtype mice. After crossing these mice with Lck-Cre transgenic mice, basigin expression was specifically inactivated in T cells in the resulting Lck-Cre; Bsgfl/fl mice. Although the birth and growth rate of Lck-Cre; Bsgfl/fl mice were similar to control mice, thymus development was partially arrested in Lck-Cre; Bsgfl/fl mice, specifically at the CD4+CD8+ double-positive (DP) and CD4 single-positive (CD4+CD8-, CD4SP) stages. In addition, CD4+ T cell activation was enhanced upon Concanavalin A (Con A) or anti-CD3/anti-CD28 stimulation but not upon PMA/Ionomycin stimulation in the absence of basigin. Overall, this study provided the first in vivo evidence for the function of basigin in thymus development. Moreover, the successful generation of the conditional null basigin allele provides a useful tool for the study of distinct physiological or pathological functions of basigin in different tissues at different development stages.
机译:Basigin是高度糖基化的跨膜蛋白,在广泛的组织中表达,并参与许多生理和病理过程。但是,basigin在体内的作用仍然未知。为了更好地了解basisin在体内的生理和病理功能,我们通过引入basisin基因(Bsg)外显子2和7侧翼的两个loxP位点生成了条件无效等位基因。 Bsg fl / fl 小鼠以预期的孟德尔比率出生,与野生型小鼠相比,生长速度相似。在将这些小鼠与Lck-Cre转基因小鼠杂交后,在所得Lck-Cre的T细胞中特异性地失活了胎盘蛋白的表达。 Bsg fl / fl 小鼠。尽管Lck-Cre的出生和生长速度; Bsg fl / fl 小鼠与对照小鼠相似,胸腺发育被部分阻滞在Lck-Cre中。 Bsg fl / fl 小鼠,特别是CD4 + CD8 + 双阳性(DP)和CD4单阳性(CD4 + CD8 -,CD4SP)阶段。此外,在没有芥兰素的情况下,伴刀豆球蛋白A(Con A)或抗CD3 /抗CD28刺激可增强CD4 + T细胞的活化,但不受PMA /碘霉素刺激。总的来说,这项研究为basigin在胸腺发育中的功能提供了第一个体内证据。此外,成功产生条件无效的basigin等位基因为研究basisgin在不同发育阶段的不同组织中独特的生理或病理功能提供了有用的工具。

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