Identification of amino acids in transmembrane domains of mutated cytokine receptor-like factor 2 and interleukin-7 receptor α required for constitutive signal transduction

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Rio Yamamoto , Ryosuke Segawa , Hiyori Kato , Yuya Niino , Takeshi Sato , Masahiro Hiratsuka , Noriyasu Hirasawa
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Abstract

Cytokine receptor-like factor 2 (CRLF2) and interleukin-7 receptor α (IL-7Rα) form a receptor for thymic stromal lymphopoietin (TSLP). A somatic mutation consisting of the substitution of five amino acids (SLLLL) in the transmembrane domain of CRLF2 with three amino acids, including glutamic acid, isoleucine, and methionine (insEIM), which has been identified in acute lymphocytic leukemia, causes the TSLP-independent dimerization with IL-7Rα and activation. However, the dimerization mechanism remains unclear. In this study, we examined the involvement of the amino acids in the transmembrane domains of EIM CRLF2 and IL-7Rα in TSLP-independent activation. HEK293 cells were transfected with vectors encoding CRLF2 and IL-7Rα, or their mutants, in which the amino acid of the transmembrane domain was replaced with alanine. STAT5 phosphorylation was detected using western blotting, and receptor dimerization was analyzed using the NanoBiT assay. The substitution of glutamic acid within the insEIM mutation for alanine failed to cause the STAT5 phosphorylation in the absence of TSLP. Moreover, the alanine substation of the specific leucine residues in the transmembrane domains of both CRLF2 and IL-7Rα abrogated the TSLP-independent signal transduction and dimerization. The mutation of IL-7Rα W264 partially reduced the phosphorylation of STAT5 without affecting receptor dimerization. These results suggest that the amino acids in the transmembrane domains of EIM CRLF2 and IL-7Rα play at least three possible functions: interaction through hydrogen bonds, hydrophobic interaction, and signal transduction. Our findings contribute to a better understanding of the function of the transmembrane domains of cytokine receptors in their dimerization and signal transduction.

Abstract Image

鉴定构成型信号转导所需的突变细胞因子受体样因子 2 和白细胞介素-7 受体 α 跨膜结构域中的氨基酸。
细胞因子受体样因子 2(CRLF2)和白细胞介素-7 受体 α(IL-7Rα)构成了胸腺基质淋巴细胞生成素(TSLP)的受体。在急性淋巴细胞白血病中发现了一种体细胞突变,即 CRLF2 跨膜结构域中的五个氨基酸(SLLLL)被三个氨基酸(包括谷氨酸、异亮氨酸和蛋氨酸)取代(insEIM),从而导致与 IL-7Rα 无关的 TSLP 二聚化和活化。然而,二聚化机制仍不清楚。在本研究中,我们研究了 EIM CRLF2 和 IL-7Rα 跨膜结构域中的氨基酸参与 TSLP 非依赖性活化的情况。用编码 CRLF2 和 IL-7Rα 的载体或它们的突变体(其中跨膜结构域的氨基酸被丙氨酸取代)转染 HEK293 细胞。用 Western 印迹法检测 STAT5 磷酸化,用 NanoBiT 分析法分析受体二聚化。在没有 TSLP 的情况下,将 insEIM 突变中的谷氨酸替换为丙氨酸不能导致 STAT5 磷酸化。此外,CRLF2和IL-7Rα跨膜结构域中特定亮氨酸残基的丙氨酸置换也削弱了不依赖于TSLP的信号转导和二聚化。IL-7Rα W264的突变部分降低了STAT5的磷酸化,但不影响受体的二聚化。这些结果表明,EIM CRLF2 和 IL-7Rα 跨膜结构域中的氨基酸至少有三种可能的功能:通过氢键相互作用、疏水相互作用和信号转导。我们的发现有助于更好地理解细胞因子受体跨膜结构域在二聚化和信号转导中的功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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