Department of Membrane Biochemistry, Life and Medical Sciences (LIMES) Institute, University of Bonn, Carl-Troll-Straße 31, 53115, Bonn, Germany.
Sci Rep. 2022 Mar 16;12(1):4494. doi: 10.1038/s41598-022-07243-y.
Tetraspanins are a family of small proteins with four transmembrane segments (TMSs) playing multiple roles in human physiology. Nevertheless, we know little about the factors determining their structure. In the study at hand, we focus on the small intracellular loop (SIL) between TMS2 and TMS3. There we have identified a conserved five amino acid core region with three charged residues forming an M-shaped backbone, which we call M-motif. The M´s plane runs parallel to the membrane surface and the central amino acid constitutes the inter-helix turning point. At the second position of the M-motif, in tetraspanin crystal structures we identified a glutamate oriented towards a lysine in the juxtamembrane region of TMS1. Using Tspan17 as example, we find that by mutating either the glutamate or juxtamembrane-lysine, but not upon glutamate/lysine swapping, expression level, maturation and ER-exit are reduced. We conclude that the SIL is more than a short linking segment but propose it is involved in shaping the tertiary structure of tetraspanins.
四跨膜蛋白是一类具有四个跨膜结构域(TMSs)的小蛋白家族,在人体生理学中发挥多种作用。然而,我们对决定其结构的因素知之甚少。在目前的研究中,我们专注于 TMS2 和 TMS3 之间的小细胞内环(SIL)。在那里,我们鉴定出一个保守的五氨基酸核心区域,其中三个带电荷的残基形成 M 形骨架,我们称之为 M 基序。M 的平面与膜表面平行,中央氨基酸构成螺旋间的转折点。在四跨膜蛋白晶体结构中,我们在 M 基序的第二个位置鉴定出一个谷氨酸,它朝向 TMS1 近膜区域的赖氨酸。以 Tspan17 为例,我们发现通过突变谷氨酸或近膜赖氨酸,但不是通过谷氨酸/赖氨酸交换,会降低表达水平、成熟和内质网出口。我们得出结论,SIL 不仅仅是一个短的连接片段,而是参与塑造四跨膜蛋白的三级结构。