Department of Biology, University of York, York YO10 5DD, United Kingdom.
J Biol Chem. 2012 Jan 27;287(5):3185-96. doi: 10.1074/jbc.M111.305649. Epub 2011 Dec 2.
Metal tolerance proteins (MTPs) are plant members of the cation diffusion facilitator (CDF) transporter family involved in cellular metal homeostasis. Members of the CDF family are ubiquitously found in all living entities and show principal selectivity for Zn(2+), Mn(2+), and Fe(2+). Little is known regarding metal selectivity determinants of CDFs. We identified a novel cereal member of CDFs in barley, termed HvMTP1, that localizes to the vacuolar membrane. Unlike its close relative AtMTP1, which is highly selective for Zn(2+), HvMTP1 exhibits selectivity for both Zn(2+) and Co(2+) as assessed by its ability to suppress yeast mutant phenotypes for both metals. Expression of HvMTP1/AtMTP1 chimeras in yeast revealed a five-residue sequence within the AtMTP1 N-segment of the His-rich intracytoplasmic loop that confines specificity to Zn(2+). Furthermore, mutants of AtMTP1 generated through random mutagenesis revealed residues embedded within transmembrane domain 3 that additionally specify the high degree of Zn(2+) selectivity. We propose that the His-rich loop, which might play a role as a zinc chaperone, determines the identity of the metal ions that are transported. The residues within transmembrane domain 3 can also influence metal selectivity, possibly through conformational changes induced at the cation transport site located within the membrane or at the cytoplasmic C-terminal domain.
金属耐受蛋白(MTPs)是植物阳离子扩散促进因子(CDF)转运家族的成员,参与细胞内金属稳态。CDF 家族成员广泛存在于所有生物体中,对 Zn(2+)、Mn(2+)和 Fe(2+)具有主要选择性。关于 CDF 金属选择性决定因素的了解甚少。我们在大麦中鉴定了一种新型的 CDF 谷物成员,称为 HvMTP1,它定位于液泡膜。与对 Zn(2+)具有高度选择性的近亲 AtMTP1 不同,HvMTP1 对 Zn(2+)和 Co(2+)都具有选择性,因为它能够抑制这两种金属的酵母突变体表型。在酵母中表达 HvMTP1/AtMTP1 嵌合体表明,His 丰富的细胞内环中的 AtMTP1 N 段内存在一个五残基序列,该序列将特异性限制在 Zn(2+)上。此外,通过随机诱变生成的 AtMTP1 突变体揭示了嵌入跨膜域 3 内的残基,这些残基进一步指定了高度的 Zn(2+)选择性。我们提出,富含 His 的环可能作为锌伴侣发挥作用,决定了被转运的金属离子的身份。跨膜域 3 内的残基也可能通过位于膜内或细胞质 C 末端结构域的阳离子转运位点的构象变化来影响金属选择性。