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对 β1 整合素胞质域中苏氨酸基序磷酸化的新认识。

New insights into the phosphorylation of the threonine motif of the β1 integrin cytoplasmic domain.

机构信息

Department of Molecular Medicine, Max Planck Institute of Biochemistry, Martinsried, Germany.

Department of Biosystems Science and Engineering, Eidgenössische Technische Hochschule Zurich, Basel, Switzerland.

出版信息

Life Sci Alliance. 2022 Jan 7;5(4). doi: 10.26508/lsa.202101301. Print 2022 Apr.

Abstract

Integrins require an activation step before ligand binding and signaling that is mediated by talin and kindlin binding to the β integrin cytosolic domain (β-tail). Conflicting reports exist about the contribution of phosphorylation of a conserved threonine motif in the β1-tail (β1-pT788/pT789) to integrin activation. We show that widely used and commercially available antibodies against β1-pT788/pT789 integrin do not detect specific β1-pT788/pT789 integrin signals in immunoblots of several human and mouse cell lysates but bind bi-phosphorylated threonine residues in numerous proteins, which were identified by mass spectrometry experiments. Furthermore, we found that fibroblasts and epithelial cells expressing the phospho-mimicking β1-TT788/789DD integrin failed to activate β1 integrins and displayed reduced integrin ligand binding, adhesion initiation and cell spreading. These cellular defects are specifically caused by the inability of kindlin to bind β1-tail polypeptides carrying a phosphorylated threonine motif or phospho-mimicking TT788/789DD substitutions. Our findings indicate that the double-threonine motif in β1-class integrins is not a major phosphorylation site but if phosphorylated would curb integrin function.

摘要

整合素在与配体结合和信号转导之前需要经过一个激活步骤,该步骤由 talin 和 kindlin 与β整合素胞质结构域(β-尾)结合介导。关于β1-尾(β1-pT788/pT789)中保守的苏氨酸模体磷酸化对整合素激活的贡献,存在相互矛盾的报道。我们表明,广泛使用和商业上可获得的针对β1-pT788/pT789 整合素的抗体在几种人源和鼠源细胞裂解物的免疫印迹中不能检测到特异性的β1-pT788/pT789 整合素信号,但可以结合大量蛋白质中的双磷酸化苏氨酸残基,这些蛋白质通过质谱实验鉴定。此外,我们发现表达磷酸模拟β1-TT788/789DD 整合素的成纤维细胞和上皮细胞未能激活β1 整合素,并且表现出整合素配体结合、黏附起始和细胞铺展减少。这些细胞缺陷是由 kindlin 无法结合携带磷酸化苏氨酸模体或磷酸模拟 TT788/789DD 取代的β1-尾多肽特异性引起的。我们的研究结果表明,β1 类整合素中的双苏氨酸模体不是主要的磷酸化位点,但如果发生磷酸化,会抑制整合素功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/abc3/8761493/3b1ba029322c/LSA-2021-01301_Fig1.jpg

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