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Biomedical subjects

N Imamoto

Publications and source records attributed to N Imamoto.

At least 37 records · Page 2Linked to original sources

Familial occurrence of moyamoya disease in the mother and four daughters including identical twins.

Familial occurrence of moyamoya disease is described in the mother and four daughters, including identical twins. Physical examination findings on admission were all normal and no mental retardation was observed. The third daughter had suffered from a ventricular septal defect when aged 6 years, but the others all had unremarkable past histories. Four of the five patients presented with transient ischemic attack as the initial symptoms, but one patient remains asymptomatic. Two patients had had repeated transient ischemic attacks. Cerebral angiography revealed either stenosis or occlusion of the intracranial portion of the bilateral internal carotid arteries associated with moyamoya vessels in all patients. The findings of moyamoya disease in a parent and four siblings including identical twins suggest that genetic factors are important in the pathogenesis of moyamoya disease.

Adolescent↗

Extracellular signal-dependent nuclear import of Stat1 is mediated by nuclear pore-targeting complex formation with NPI-1, but not Rch1.

In response to interferon-gamma (IFN-gamma), Stat1 is tyrosine phosphorylated and translocates to the nucleus where it activates transcription. In this study, we identified factors which mediate the nuclear import of Stat1. Tyrosine-phosphorylated Stat1 associated with the beta subunit (a 97 kDa component) of the nuclear pore-targeting complex via the NPI-1 family, but not the Rch1 family, of alpha subunit (a 58 kDa component) as a result of IFN-gamma stimulation. Antibodies against NPI-1 or beta subunit consistently inhibited the IFN-gamma-dependent nuclear import of Stat1 in living cells, although antibodies reactive to Rch1 had no effect. Solution binding assays with deletion mutants of NPI-1 showed that the Stat1-binding domain of NPI-1 was located in the carboxy-terminal region, which is clearly distinct from the SV40 large T antigen nuclear localization signal (NLS)-binding region. These results indicate that the extracellular signal-dependent nuclear transport of Stat1 is mediated by NPI-1, but not Rch1, in conjunction with beta subunit, and that these factors participate in, not only constitutive, but also the conditional nuclear import of proteins.

Binding Sites↗

Ran-unassisted nuclear migration of a 97-kD component of nuclear pore-targeting complex.

A 97-kD component of nuclear pore-targeting complex (the beta-subunit of nuclear pore-targeting complex [PTAC]/importin/karyopherin) mediates the import of nuclear localization signal (NLS)-containing proteins by anchoring the NLS receptor protein (the alpha-subunit of PTAC/importin/karyopherin) to the nuclear pore complex (NPC). The import requires a small GTPase Ran, which interacts directly with the beta-subunit. The present study describes an examination of the behavior of the beta-subunit in living cells and in digitonin-permeabilized cells. In living cells, cytoplasmically injected beta-subunit rapidly migrates into the nucleus. The use of deletion mutants reveals that nuclear migration of the beta-subunit requires neither Ran- nor alpha-subunit-binding but only the NPC-binding domain of this molecule, which is also involved in NLS-mediated import. Furthermore, unlike NLS-mediated import, a dominant-negative Ran, defective in GTP-hydrolysis, did not inhibit nuclear migration of the beta-subunit. In the digitonin-permeabilized cell-free import assay, the beta-subunit transits rapidly through the NPC into the nucleus in a saturating manner in the absence of exogenous addition of soluble factors. These results show that the beta-subunit undergoes translocation at the NPC in a Ran-unassisted manner when it does not carry alpha-subunit/NLS substrate. Therefore, a requirement for Ran arises only when the beta-subunit undergoes a translocation reaction together with the alpha-subunit/NLS substrate. The results provide an insight to the yet unsolved question regarding the mechanism by which proteins are directionally transported through the NPC, and the role of Ran in this process.

Animals↗

Differential modes of nuclear localization signal (NLS) recognition by three distinct classes of NLS receptors.

The targeting of karyophilic proteins to nuclear pores is mediated via the formation of a nuclear pore-targeting complex, through the interaction of nuclear localization signal (NLS) with its NLS receptor. Recently, a novel human protein, Qip1, was identified from a yeast two-hybrid system with DNA helicase Q1. This study demonstrates that Qip1 is a novel third class of NLS receptor that efficiently recognizes the NLS of the helicase Q1. Moreover, the data obtained in this study show that the specific interaction between Qip1 and the NLS of the helicase Q1 requires its upstream sequence of the minimal essential NLS. By using purified recombinant proteins alone in the digitonin-permeabilized cell-free transport system, it was demonstrated that the two known human NLS receptors, Rch1 and NPI-1, are able to transport all the tested NLS substrates into the nucleus, while Qip1 most efficiently transports the helicase Q1-NLS substrates, which contain its upstream sequence in so far as we have examined the system. Furthermore, in HeLa cell crude cytosol, it was found that endogenous Rch1 binds to all the tested NLS substrates, while the binding of endogenous NPI-1 is restricted to only some NLSs, despite the fact that NPI-1 itself shows binding activity to a variety of NLSs. These results indicate that at least three structurally and functionally distinct NLS receptors exist in the human single cell population, and suggest that the nuclear import of karyophilic proteins may be controlled in a complex manner at the NLS recognition step by the existence of a variety of NLS receptors with various specificities to each NLS.

Adenosine Triphosphatases↗

Identification of novel homologues of mouse importin alpha, the alpha subunit of the nuclear pore-targeting complex, and their tissue-specific expression.

Transport of karyophilic proteins into the nucleus is mediated by nuclear localization signals (NLSs) via a multistep process. The karyophiles are recognized by the importin alpha subunit in the cytoplasm to form a stable complex, termed the nuclear pore-targeting complex (PTAC). To date, three different mammalian alpha subunits (mSRP1/NPI-1, PTAC58/mPendulin/Rch1 and Qip1) have been identified. In this study, we report the identification of three additional mouse genes homologous to the known alpha subunits using RT-PCR methodology and show that the mouse alpha subunits can be classified into at least three subfamilies, alpha-P, alpha-Q and alpha-S families, each composed of closely related members (more than 80% amino acid sequence identity). These three subfamilies, however, have approximately 50% amino acid identity to one another. Northern blot analysis showed that all were differentially expressed in various mouse tissues. These results suggest that the function of these proteins may be controlled in a tissue-specific manner and that their combinatorial expression may play a role in differentiation and organogenesis.

Amino Acid Sequence↗

Essential role of active nuclear transport in apoptosis.

BACKGROUND: Apoptosis is defined by chromatin condensation, nuclear fragmentation and the formation of apoptotic bodies. Because apoptotic signals are transmitted through a common pathway that includes the target steps of death-driving ICE-family proteases and anti-cell death protein Bcl-2 in the cytoplasm, the signals must be transferred from the cytoplasm to the nucleus, at least to induce the apoptotic manifestation of the nucleus. Small signal molecules might diffuse across nuclear pores, but larger molecules are transported by active mechanisms requiring ATP and GTP hydrolysis. It is not known whether apoptotic signals are transmitted into the nucleus by the mechanisms of active nuclear transport. RESULTS: To test the possibility that active nuclear transport is involved in apoptotic signal transmission, we have analysed the effects of molecules that inhibit active nuclear transport on apoptosis. Wheat germ agglutinin (WGA), excess amounts of p10 protein, Ran-GTPgammaS complex, and anti-PTAC58 antibody, which all inhibit active nuclear transport when exogenously microinjected, prevent Fas-induced apoptotic nuclear manifestation. WGA also prevents apoptotic nuclear change promoted by microinjected active CPP32beta/Yama protease (an ICE family member), which plays an essential role in most apoptosis. CONCLUSIONS: The results presented here strongly suggest that active nuclear transport is essential for apoptotic signal transduction.

Antibodies↗

[Nuclear pore-targeting complex/importin family].

Transport of proteins into the nucleus is essential for many cellular functions to proceed. Nuclear import of proteins is directed by short amino acid sequence termed nuclear localization signals (NLS). The process of nuclear import is highly selective, requires energy, and is mediated by several soluble/cytoplasmic factors. At the entry to the import pathway, nuclear proteins form a stable complex, termed nuclear pore-targeting complex (PTAC). The complex consists of a nuclear protein and two cytosolic factors termed PTAC58 (importin alpha) and PTAC97 (importin beta). This report describes the function of PTAC/importin as well as their recently identified family proteins.

Biological Transport↗

Magnetoencephalographic features in neurocysticercosis.

BACKGROUND: Magnetoencephalography (MEG) is a method of determining the brain activity noninvasively be detecting the magnetic fields associated with neuronal electrical activities. METHODS: By using 37-channel DC-superconducting quantum interference devices, MEG activity was recorded in a patient with neurocysticerosis, who had a long-term history of epilepsy. RESULTS: MEG clearly demonstrated accumulation of current dipoles originating from high-frequency waves around the cysticercal cyst, while scalp electroencephalogram failed to reveal paroxysmal discharge. Intraoperative electrocorticography revealed multiple spike activities around the lesion, consistent with MEG findings. CONCLUSIONS: We discussed the application of MEG to the patients with neurocysticercosis in estimating epileptogenic sources.

Adult↗

In vivo evidence for involvement of a 58 kDa component of nuclear pore-targeting complex in nuclear protein import.

We recently showed that a nuclear location signal (NLS)-containing karyophile forms a stable complex with cytoplasmic components for nuclear pore-targeting The complex, termed nuclear pore-targeting complex (PTAC), contained two essential proteins of 54 and 90 kDa, respectively, as estimated by electrophoresis. In this study, we found that the 54 kDa component of PTAC is the mouse homologue of Xenopus importin (m-importin). Cytoplasmic injection of the antibodies raised against recombinant m-importin showed an inhibitory effect on nuclear import of a karyophile in living mammalian cells. A portion of cytoplasmically injected antibodies migrated rapidly into the nucleus, indicating dynamic movement of this protein across the nuclear envelope. Moreover, the injected antibodies co-precipitated the karyophile, in an NLS-dependent manner, with endogenous m-importin in the cytoplasm. These results provide in vivo evidence that m-importin is involved in nuclear protein import through association with a NLS in the cytoplasm before nuclear pore binding.

Amino Acid Sequence↗

The nuclear pore-targeting complex binds to nuclear pores after association with a karyophile.

We recently showed that a karyophilic protein forms a stable complex, termed nuclear pore-targeting complex (PTAC), with cytoplasmic components prior to nuclear pore-binding. In this study, we cloned a cDNA encoding a 97 kDa of PTAC (PTAC97). Recombinant PTAC97 completely reconstitutes the nuclear binding-step in conjunction with a 58 kDa component of PTAC (PTAC58) in the semi-intact cell-free transport assay. Biochemical analysis reveals that PTAC58 binds to a karyophilic protein, and PTAC97 is associated with PTAC58 in a 1:1 molar ratio. A complex of PTAC97 and PTAC58 targets nuclear pores, depending on the presence of a karyophile. These in vitro results suggest that the first step in nuclear import occurs through the targeting-complex formation of a karyophile with PTAC58 bound to PTAC97.

Amino Acid Sequence↗

A karyophilic protein forms a stable complex with cytoplasmic components prior to nuclear pore binding.

Targeting of karyophilic proteins to nuclear pores is known to require several cytoplasmic factors, including the nuclear location signal-binding protein. Using a digitonin-permeabilized cell-free transport assay, we have obtained a cytoplasmic fraction containing factors that specifically bind to karyophilic protein and support the nuclear binding step of the transport. Components in this fraction form a stable complex with the karyophile through interaction with nuclear location signal. Since this complex shows nuclear pore binding activity prior to nuclear entry in the absence of other cytosolic factors, we call it nuclear pore-targeting complex. It consists of karyophilic protein and four proteins of 54, 56, 66, and 90 kDa. In our reconstitution experiments, a complex with 54 and 90 kDa proteins is capable of targeting karyophiles to the nuclear pores.

Amino Acid Sequence↗

Role of heat shock cognate 70 protein in import of ornithine transcarbamylase precursor into mammalian mitochondria.

The roles of the 70-kDa cytosolic heat shock protein (hsp70) in import of precursor proteins into the mitochondria were postulated to be related to (i) unfolding of precursor proteins in the cytosol, (ii) maintenance of the import-competent state, and (iii) unfolding and transport of precursor proteins through contact sites, in cooperation with matrix hsp70. We examined roles of cytosolic hsp70 family members in import of ornithine transcarbamylase precursor (pOTC) into rat liver mitochondria, using an in vitro import system and antibodies against hsp70. Immunoblot analysis using an hsc70 (70-kDa heat shock cognate protein)-specific monoclonal antibody and a polyclonal antibody that reacts with both hsc70 and hsp70 showed that hsc70 is the only or major form of hsp70 family members in the rabbit reticulocyte lysate. The hsc70 antibody did not inhibit pOTC import when added prior to import assay. However, when pOTC was synthesized in the presence of the antibody and then subjected to import assay, pOTC import was markedly decreased. pOTC import was also decreased when the precursor was synthesized in the lysate depleted for hsc70 by treatment with hsc70 antibody-conjugated Sepharose. This reduction was almost completely restored by readdition of purified mouse hsc70 during pOTC synthesis. The readdition of hsc70 after pOTC synthesis and only during the import assay was not effective. Thus, once import competence of pOTC was lost, hsc70 was ineffective for restoration. Newly synthesized pOTC lost import competence in the absence of hsc70 somewhat more rapidly than in its presence. These results indicate that hsc70 is required during pOTC synthesis and not during import into the mitochondria. hsc70 presumably binds to pOTC polypeptide and maintains it in an import-competent form.

Animals↗

Loss of RCC1 leads to suppression of nuclear protein import in living cells.

The role of RCC1-Ran/TC4 in nuclear protein import was examined in living cells using a temperature-sensitive RCC1 mutant cell line, tsBN2, and tsBN2 transformed with a RCC1 cDNA lacking the nuclear localization sequence domain, delta 8-29. Substrate, containing a small number of SV40 T antigen nuclear localization sequence peptides, injected into the cytoplasm of tsBN2 cells cultured at the non-permissive temperature of 39.5 degrees C did not accumulate efficiently in the nucleus. When the same substrate was injected into the cytoplasm of heterokaryons of tsBN2 and wild type BHK21 cells, import efficiency into the tsBN2 nuclei was not restored. Import into the BHK21 nuclei gradually decreased after fusion. In contrast, import efficiency into tsBN2 nuclei gradually recovered after fusion with tsBN2 cells transformed with delta 8-29 in which functional RCC1 was diffusely distributed in both the nuclei and cytoplasm. Substrate did not accumulate in the nuclei of digitonin-permeabilized tsBN2 cells cultured at 39.5 degrees C even in the presence of normal cytosol. These results suggest that loss of RCC1 function leads to the decline of import competence of the nucleus and accumulation of a factor in the cytoplasm that suppresses nuclear import. These results indicate that the RCC1-Ran/TC4 system may regulate nuclear import.

Amino Acid Sequence↗

[Unusual manifestation of cerebral cysticercosis].

We have surgically treated two patients with cerebral cysticercosis, which were pre-operatively unexpected due to unusual CT and MRI manifestations. A 24 year old chinese farmer with intermittent severe headache for 6 years was examined by CT and MRI. A huge cystic lesion with same density or intensities to CSF occupied retroclival posterior fossa to upper cervical spinal canal and displaced neural structures backwardly. By suboccipital craniectomy, watery clear cyst fluid of 44ml was aspirated and the shrunken cyst was pulled out with ease. It was unable to predict until an electron microscopic study, which revealed a larva with three layers of microvilli, vesicular tegmentum and infrategmental muscle bundles and vesicles. The findings were same to those of racemose cysticercus of human brain. Giant cysts of cysticercosis were infrequently present supratentorially, although infratentorial or basal cysticercosis were racemose and small. The present case may be the first case of a huge cyst of cysticercosis in posterior fossa. A 44 year old Japanese businessman with 15 years history of general convulsion underwent craniotomy due to a small, but growing cystic granulomatous mass in right inferior frontal gyrus. The CT scan examined at 3 years after his first general convulsion revealed a small round low density mass, 5mm in diameter, in right frontal lobe and its wall was weakly enhanced by contrast media. The follow-up CT scans and MRIs revealed that the enhancing cystic mass became thick and deformed, and perifocal edema came to evident and progressed stepwise by attacks of general convulsions.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

70-kDa heat-shock cognate protein colocalizes with karyophilic proteins into the nucleus during their transport in vitro.

Recently, we showed that antibodies against 70-kDa heat-shock cognate 66otein (hsc70) inhibit nuclear transport of karyophilic proteins in vivo. In this study, we examined the involvement of hsc70 in nuclear transport using a digitonin-permeabilized cell-free transport system. Depletion of the cytosolic extract required for nuclear transport of hsc70 by incubation with anti-hsc70 antibodies reduced the nuclear transport activity significantly, and addition of purified hsc70 to the depleted extract restored the transport activity. We examined the localization of hsc70 during nuclear transport in vitro by indirect immunofluorescence studies. Hsc70 accumulated in the nucleus when bovine serum albumin (BSA) conjugated to SV40 large T-antigen nuclear localization signal (NLS) peptides (T-BSA) or nucleoplasmin was added exogenously to the cytosolic extract, but not when BSA conjugated to transport-incompetent point-mutated NLS peptide was added. This karyophilic protein-dependent accumulation of hsc70 was dependent on the cytosolic extract, temperature, and ATP and was sensitive to wheat germ agglutinin. Addition of excess unlabeled T-BSA to the cytosolic extract competitively inhibited the nuclear accumulation of fluorescently labeled T-BSA or nucleoplasmin, but did not affect accumulation of hsc70 into the nucleus. These results show that hsc70 is required for nuclear transport and that it is colocalized with karyophilic proteins during their active import into the nucleus in vitro.

Adenosine Triphosphate↗

A long synthetic peptide containing a nuclear localization signal and its flanking sequences of SV40 T-antigen directs the transport of IgM into the nucleus efficiently.

Synthetic short peptides containing only the nuclear localization signal (NLS) direct the transport of nonnuclear proteins into the nucleus. As a conjugate of the synthetic peptide with immunoglobulin M (IgM) did not enter the nucleus, there was believed to be a size limit for nuclear transport of NLS-conjugated proteins. However, we found that IgM conjugated with purified nucleoplasmin, a nuclear protein of Xenopus oocytes, rapidly accumulated in the nucleus. For direct comparison with the short peptide, we prepared a long peptide containing the NLS and its flanking sequences of SV40 large T-antigen and its mutated long peptide, in which possible phosphorylation sites located at the amino terminal of the NLS were changed to alanine. Kinetic experiments showed that wild-type long peptide-IgM conjugates were almost entirely taken up into the nucleus within 30 min after their injection, whereas almost 60 min was required for the mutated long peptide-IgM conjugates to enter the nucleus of all the cells examined, and there was no apparent accumulation of short peptide-IgM conjugates in the nucleus within 60 min. These results indicate that even when the kinetics of transport are affected by amino acid substitutions, the long peptide directs the transport of large molecules such as IgM into the nucleus.

Amino Acid Sequence↗