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LAT 跨膜域中脯氨酸和甘氨酸的作用。

The role of prolines and glycine in the transmembrane domain of LAT.

机构信息

Department of Biophysical Chemistry, J. Heyrovsky Institute of Physical Chemistry, Czech Academy of Sciences, Prague, Czech Republic.

Laboratory of Leukocyte Signaling, Institute of Molecule Genetics, Czech Academy of Sciences, Prague, Czech Republic.

出版信息

FEBS J. 2021 Jul;288(13):4039-4052. doi: 10.1111/febs.15713. Epub 2021 Feb 12.

Abstract

Linker for activation in T cells (LAT) is a critical regulator of T-cell development and function. It organises signalling events at the plasma membrane. However, the mechanism, which controls LAT localisation at the plasma membrane, is not fully understood. Here, we studied the impact of helix-breaking amino acids, two prolines and one glycine, in the transmembrane segment on localisation and function of LAT. Using in silico analysis, confocal and super-resolution imaging and flow cytometry, we demonstrate that central proline residue destabilises transmembrane helix by inducing a kink. The helical structure and dynamics are further regulated by glycine and another proline residue in the luminal part of LAT transmembrane domain. Replacement of these residues with aliphatic amino acids reduces LAT dependence on palmitoylation for sorting to the plasma membrane. However, surface expression of these mutants is not sufficient to recover function of nonpalmitoylated LAT in stimulated T cells. These data indicate that geometry and dynamics of LAT transmembrane segment regulate its localisation and function in immune cells.

摘要

链接激活 T 细胞(LAT)是 T 细胞发育和功能的关键调节因子。它在质膜上组织信号事件。然而,控制 LAT 在质膜上定位的机制尚未完全了解。在这里,我们研究了跨膜片段中破坏螺旋的氨基酸(两个脯氨酸和一个甘氨酸)对 LAT 定位和功能的影响。通过计算机分析、共聚焦和超分辨率成像以及流式细胞术,我们证明中央脯氨酸残基通过诱导扭曲来破坏跨膜螺旋。螺旋结构和动力学进一步受到 LAT 跨膜结构域腔侧部分中甘氨酸和另一个脯氨酸残基的调节。用脂肪族氨基酸替换这些残基会降低 LAT 对棕榈酰化的依赖性,从而有利于分选到质膜。然而,这些突变体的表面表达不足以恢复刺激 T 细胞中非棕榈酰化 LAT 的功能。这些数据表明,LAT 跨膜片段的几何形状和动力学调节其在免疫细胞中的定位和功能。

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