Maize opaque1 and protein body formation.
نویسنده
چکیده
Maize (Zeamays) is one of themost important cereal grains, and considerable effort has been focused on improving this source of human nutrition (Gibbon and Larkins, 2005). Most of the weight of maize kernels is the endosperm, and the protein composition of the endosperm is an important determiner of kernel texture and nutritional value. Zeins make up over half of endosperm total protein, and alterations in zein content lead to changes in nutritional quality and the appearance of the maize kernel. Numerous classical opaque mutants, named for the maize kernel phenotype, have been isolated and often result from decreased zein synthesis in the endosperm. Some have abnormal protein bodies, which are critical for proper zein accumulation in the kernel. Also, inhibition of zein gene expression by RNA interference phenocopies the opaque phenotype (Wu and Messing, 2010). However, in the classic maize mutant opaque1 (O1;), the amount and amino acid composition of zein and nonzein proteins is similar to the wild type, suggesting no defect of zein synthesis in this mutant. Usingmap-based positional cloning,Wang et al. (2012) show that O1 encodes a myosin XI motor protein that shares many structural features with known myosins (see figure). These include an N-terminal SH3-like domain (unknown function), a myosin head motor domain (actin binding, ATP hydrolysis, and force generation), a neck domain with a series of six IQ motifs (binding sites for myosin light chains and calmodulin), a coiled-coil domain (homodimerization), and a C-terminal DIL domain (anchoring to cargo via attachments to organelle-specific receptors). Consistent with the role of myosin XI proteins in endomembrane system function, the authors show that the O1 mutant has abnormal, dilated endoplasmic reticulum (ER) and small, misshapen protein bodies. In O1 kernels, protein bodies were roughly 60% the size of wild-type protein bodies, with a compensating increase in their overall number. Therefore, total endosperm protein and amounts of zein and nonzein proteins were identical for the wild type and O1, and SDS-PAGE analysis showed no obvious differences in zein protein composition. O1, which is highly expressed in kernels, was shown to be most abundant in the endomembrane fraction of kernels. Further analysis showed the O1 was associated preferentiallywith theERmembrane.Because cargo attachment ismediated bymyosin tails, the authors used a dominant-negative strategy to analyze the function of O1 in vivo by coexpressing an ER marker protein and the O1 tail domain fused to enhanced yellow fluorescent protein. In Nicotiana benthamiana, they showed that overexpression of the O1 tail domain significantly inhibited ER motility. Although myosin has a role in formation of ER tubules in yeast and plants, the authors found no evidence of interaction either with the maize homologs of proteins known to be involved in ER tubule formation or with other maize protein body proteins. However, subsequent analysis showed that the O1C-terminal tail domain interactedwith an HSP70 interacting protein (HIP), suggesting that the HIP acts as an adaptor between O1 and the ER. Based on the above evidence and the observation that myosin XI is the major protein responsible for ER streaming (Ueda et al., 2010), the authors propose a model for the role of O1 in ER motility and protein body formation in maize kernels.
منابع مشابه
Opaque1 Encodes a Myosin XI Motor Protein That Is Required for Endoplasmic Reticulum Motility and Protein Body Formation in Maize EndospermC W OA
Myosins are encoded by multigene families and are involved in many basic biological processes. However, their functions in plants remain poorly understood. Here, we report the functional characterization of maize (Zea mays) opaque1 (o1), which encodes a myosin XI protein. o1 is a classic maize seed mutant with an opaque endosperm phenotype but a normal zein protein content. Compared with the wi...
متن کاملOpaque1 encodes a myosin XI motor protein that is required for endoplasmic reticulum motility and protein body formation in maize endosperm.
Myosins are encoded by multigene families and are involved in many basic biological processes. However, their functions in plants remain poorly understood. Here, we report the functional characterization of maize (Zea mays) opaque1 (o1), which encodes a myosin XI protein. o1 is a classic maize seed mutant with an opaque endosperm phenotype but a normal zein protein content. Compared with the wi...
متن کاملComprehensive proteomic analysis of developing protein bodies in maize (Zea mays) endosperm provides novel insights into its biogenesis
Prolamins, the major cereal seed storage proteins, are sequestered and accumulated in the lumen of the endoplasmic reticulum (ER), and are directly assembled into protein bodies (PBs). The content and composition of prolamins are the key determinants for protein quality and texture-related traits of the grain. Concomitantly, the PB-inducing fusion system provides an efficient target to produce ...
متن کاملProteomic profiling of maize opaque endosperm mutants reveals selective accumulation of lysine-enriched proteins.
Reduced prolamin (zein) accumulation and defective endoplasmic reticulum (ER) body formation occurs in maize opaque endosperm mutants opaque2 (o2), floury2 (fl2), defective endosperm*B30 (DeB30), and Mucronate (Mc), whereas other opaque mutants such as opaque1 (o1) and floury1 (fl1) are normal in these regards. This suggests that other factors contribute to kernel texture. A liquid chromatograp...
متن کاملNonredundant Function of Zeins and Their Correct Stoichiometric Ratio Drive Protein Body Formation in Maize Endosperm1[W][OA]
Zeins, the maize (Zea mays) prolamin storage proteins, accumulate at very high levels in developing endosperm in endoplasmic reticulum membrane-bound protein bodies. Products of the multigene a-zein families and the single-gene g-zein family are arranged in the central hydrophobic core and the cross-linked protein body periphery, respectively, but little is known of the specific roles of family...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- The Plant cell
دوره 24 8 شماره
صفحات -
تاریخ انتشار 2012