Puchulu-Campanella Estela, Turrini Francesco M, Li Yen-Hsing, Low Philip S
Purdue Institute for Drug Discovery, Purdue University, West Lafayette, IN 47907.
Department of Chemistry, Purdue University, West Lafayette, IN 47907.
Proc Natl Acad Sci U S A. 2016 Nov 29;113(48):13732-13737. doi: 10.1073/pnas.1611904113. Epub 2016 Nov 15.
Src homology 2 (SH2) domains are composed of weakly conserved sequences of ∼100 aa that bind phosphotyrosines in signaling proteins and thereby mediate intra- and intermolecular protein-protein interactions. In exploring the mechanism whereby tyrosine phosphorylation of the erythrocyte anion transporter, band 3, triggers membrane destabilization, vesiculation, and fragmentation, we discovered a SH2 signature motif positioned between membrane-spanning helices 4 and 5. Evidence that this exposed cytoplasmic sequence contributes to a functional SH2-like domain is provided by observations that: (i) it contains the most conserved sequence of SH2 domains, GSFLVR; (ii) it binds the tyrosine phosphorylated cytoplasmic domain of band 3 (cdb3-PO) with K = 14 nM; (iii) binding of cdb3-PO to erythrocyte membranes is inhibited both by antibodies against the SH2 signature sequence and dephosphorylation of cdb3-PO; (iv) label transfer experiments demonstrate the covalent transfer of photoactivatable biotin from isolated cdb3-PO (but not cdb3) to band 3 in erythrocyte membranes; and (v) phosphorylation-induced binding of cdb3-PO to the membrane-spanning domain of band 3 in intact cells causes global changes in membrane properties, including (i) displacement of a glycolytic enzyme complex from the membrane, (ii) inhibition of anion transport, and (iii) rupture of the band 3-ankyrin bridge connecting the spectrin-based cytoskeleton to the membrane. Because SH2-like motifs are not retrieved by normal homology searches for SH2 domains, but can be found in many tyrosine kinase-regulated transport proteins using modified search programs, we suggest that related cases of membrane transport proteins containing similar motifs are widespread in nature where they participate in regulation of cell properties.
Src同源2(SH2)结构域由约100个氨基酸的弱保守序列组成,这些序列结合信号蛋白中的磷酸酪氨酸,从而介导分子内和分子间的蛋白质 - 蛋白质相互作用。在探索红细胞阴离子转运蛋白带3的酪氨酸磷酸化引发膜不稳定、形成囊泡和碎片化的机制时,我们发现了一个位于跨膜螺旋4和5之间的SH2特征基序。以下观察结果表明这个暴露的细胞质序列构成了一个功能性的类SH2结构域:(i)它包含SH2结构域中最保守的序列GSFLVR;(ii)它以K = 14 nM的亲和力结合带3的酪氨酸磷酸化细胞质结构域(cdb3 - PO);(iii)针对SH2特征序列的抗体以及cdb3 - PO的去磷酸化均抑制cdb3 - PO与红细胞膜的结合;(iv)标记转移实验表明光可活化生物素从分离的cdb3 - PO(而非cdb3)共价转移至红细胞膜中的带3;(v)在完整细胞中,磷酸化诱导的cdb3 - PO与带3的跨膜结构域结合会导致膜特性的全局变化,包括(i)一种糖酵解酶复合物从膜上移位,(ii)阴离子转运受到抑制,以及(iii)连接基于血影蛋白的细胞骨架与膜的带3 - 锚蛋白桥断裂。由于通过正常的SH2结构域同源性搜索无法检索到类SH2基序,但使用改进的搜索程序可以在许多酪氨酸激酶调节的转运蛋白中找到,我们认为含有类似基序的膜转运蛋白相关实例在自然界中广泛存在,它们参与细胞特性的调节。