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A strategy to reduce the numbers of fish used in acute ecotoxicity testing of pharmaceuticals.

The pharmaceutical industry gives high priority to animal welfare in the process of drug discovery and safety assessment. In the context of environmental assessments of active pharmaceutical ingredients (APIs), existing U.S. Food and Drug Administration and draft European regulations may require testing of APIs for acute ecotoxicity to algae, daphnids, and fish (base-set ecotoxicity data used to derive the predicted no-effect concentration [PNECwater] from the most sensitive of three species). Subject to regulatory approval, it is proposed that testing can be moved from fish median lethal concentration (LC50) testing (typically using > or = 42 fish/API) to acute threshold tests using fewer fish (typically 10 fish/API). To support this strategy, we have collated base-set ecotoxicity data from regulatory studies of 91 APIs (names coded for commercial reasons). For 73 of the 91 APIs, the algal median effect concentration (EC50) and daphnid EC50 values were lower than or equal to the fish LC50 data. Thus, for approximately 80% of these APIs, algal and daphnid acute EC50 data could have been used in the absence of fish LC50 data to derive PNECwater values. For the other 18 APIs, use of an acute threshold test with a step-down factor of 3.2 is predicted to give comparable PNECwater outcomes. Based on this preliminary scenario of 91 APIs, this approach is predicted to reduce the total number of fish used from 3,822 to 1,025 (approximately 73%). The present study, although preliminary, suggests that the current regulatory requirement for fish LC50 data regarding APIs should be succeeded by fish acute threshold (step-down) test data, thereby achieving significant animal welfare benefits with no loss of data for PNECwater estimates.

Animal Testing Alternatives↗

The effect of sugar-free green tea chew candies on the degree of inflammation of the gingiva.

The components of green tea extracts such as catechins and polyphenols gain increasing significance in tumor research and immunology. - The clinical double blind study presented here was aimed at the investigation on how green tea catechins and polyphenols in the form of green tea dragées may influence the inflammatory behaviour of the gingiva. A total of 47 test persons with a mean age of 25.76 years (23 males, 24 females) were randomly divided into two groups: one group (n = 22: 11 males, 11 females) received chew candies containing green tea extracts, the other group (n = 25: 12 males, 13 females) received placebos with the same flavour but without active substances. At the beginning of the four week investigation period, a professional dental cleaning was carried out on all test persons. Then the persons were instructed to do their usual dental cleaning and chew eight candies distributed over the day. The API (approximal plaque index) and the SBI (sulcus bleeding index) were determined after seven days (API-1, SBI-1) and after another 21 days (API-2, SBI-2). Within the verum group, a mean value of 33.2% +/- 18.3% was determined for API-1, and 29.6% +/- 17.5% for API-2. The mean SBI-1 was 5.9% +/- 7.6%, and 3.6% +/- 5.8% for SBI-2. The clinical data within the placebo group were different: The plaque index values changed from API-1 30.3% +/- 16.3% after one week to API-2 31.8% +/- 17.2% after another three weeks. The values for the inflammatory degree of the gingiva had also changed to the negative: from SBI-1 3.4% +/- 4.1% after seven days to SBI-2 4.7% +/- 6.4% after another 21 days. Whereas in the verum group a distinct improvement in both API and SBI values could be stated, slight worsening of the values were determined for the placebo group. The results indicate that the oral application of green tea catechins and polyphenols might have a positive influence on the inflammatory reaction of periodontal structures.

Adult↗

Maternal and Paternal Risk Factors and Birth Outcomes among Asian and Pacific Islanders in Illinois.

PURPOSE. The pupose of this study was to compare maternal and paternal risk factors and the outcomes of Asian Pacific Islander (API) pregnancies with other racial/ethnic groups (Black, Hispanic, and White) in Illinois. METHODS. We examined computerized birth certificate files in Illinois to descriptively analyze birth outcomes and parental characteristics for births occurring between 1989 and 1993. Infant mortality tables were examined for birth cohorts born from 1989 to 1992. Rates among Illinois API groups were presented for the following: maternal and paternal socio-demographic factors; maternal medical risk factors, amount of prenatal care and type of method of delivery; newborn complications and various morbidity outcomes; and, early neonatal mortality. For comparison, simliar Illinois data are presented for Blacks and Whites and Hispanics. We statistically evaluated the significance in variability of rates. PRINCIPAL FINDINGS. APIs in Illinois experienced a lower infant mortality rate. API mothers were more likely to be married, beyond the teenage years, have more education and smoke less often during their pregnancy than any of the other racial/ethnic groups. In addition, API mothers were more likely to experience primiparity rather than high parity. We detected statistically signifacnt differences for maternal and paternal socio-demographic characteristics among the four populations (p<0.0001). Similarly we found statistically significant differences in risk factors during pregnancy and labor and delivery complications among four race/ethnic population (p<0.0001). CONCLUSIONS. Fetal, neonatal, post-natal and infant mortality rates were the lowest among APIs when compared to Hispanic, Black and White neonates. These differences were statistically signifacant. However, rates of inadequate prenatal care, labor and elivery complications, prematurity and low birth weight were not similarly lower among APIs. RELEVANCE TO ASIAN AND PACIFIC ISLANDER AMERICAN POPULATIONS. This paper provides a state-level examination of parental risk factors and birth outcomes among APIs. KEY WORDS. infant mortality rates; pregnancy outcomes; prenatal care; maternal risk factors; paternal risk factors; women; Illinois.

Journal Article↗

Comparison of insect kinin analogs with cis-peptide bond motif 4-aminopyroglutamate identifies optimal stereochemistry for diuretic activity.

The insect kinins are present in a wide variety of insects and function as potent diuretic peptides, though they are subject to rapid degradation by internal peptidases. Insect kinin analogs incorporating stereochemical variants of (2S,4S)-4-aminopyroglutamate (APy), a cis-peptide bond motif, demonstrate significant activity in a cricket diuretic assay. Insect kinin analogs containing (2R,4R)-APy, (2S,4R)-APy and (2S,4S)-APy are essentially equipotent on an insect diuretic assay, with EC(50) values of about 10(-7)M, whereas the (2R,4S)-APy analog is at least 10-fold more potent (EC(50) = 7 x 10(-9)M). Conformational studies in aqueous solution indicate that the (2R,4S)-APy analog is considerably more flexible than the other three variants, which may explain its greater potency. The work identifies the optimal stereochemistry for the APy scaffold with which to design biostable, peptidomimetic analogs with the potential to disrupt critical insect kinin-regulated processes in insects.

Amino Acid Motifs↗

Predictive model for the outcome of infliximab therapy in Crohn's disease based on apoptotic pharmacogenetic index and clinical predictors.

BACKGROUND: Infliximab (IFX) is an effective therapy for refractory luminal and fistulizing Crohn's disease (CD). Predictors of response could improve selection of patients with a higher probability of favorable outcomes and could improve the safety profile. We aimed to develop a predictive model for the response to infliximab in CD. METHODS: Genetic and clinical data collected in a previous pharmacogenetic study of apoptosis genes were analyzed using SAS Enterprise miner modeling software and SPSS 12.0. We proposed a novel apoptotic pharmacogenetic index (API) with a score ranging from 0 (low apoptotic response) to 3 (high apoptotic response) and subsequently developed a decision tree model. RESULTS: Response and remission rates significantly increased with API score (P = 0.005 in the group of patients with luminal CD, P = 0.02 in the group of patients with fistulizing CD). Patients with an API < or = 1 (n = 59) had the lowest response and remission rates in both the luminal CD (50% and 39.5%, respectively) and fistulizing CD (61.9% and 28.6%, respectively) groups, compared to those with an API of 2 (n = 158), whose response and remission rates were 73.8% and 56.1%, respectively, in the luminal CD group and 85.7% and 44.9%, respectively, in the fistulizing CD group; and those with an API of 3 (n = 10), whose response and remission rates were 100% and 85.7%, respectively, in the luminal CD group and 100% and 0% in the fistulizing CD group. Response in patients with an API < or = 1 was significantly influenced by concurrent azathioprine therapy in the luminal CD (21.4% versus 78.9%, P < 0.001) and in the fistulizing CD (46.6% versus 100%, P = 0.04) groups. In patients with an API of 2, we saw an interaction with age older than 40 years and location of disease (response 52.2% versus 83.9%, P = 0.008) in the luminal CD group and with baseline CRP greater than 5 mg/L (73.9% versus 93.9%, P = 0.04) in the fistulizing CD group. CONCLUSIONS: From our newly proposed apoptotic pharmacogenetic index and clinical predictors, we developed a model for prediction of low, medium, and high responses to the first infusion of IFX in patients with CD. Further studies are needed to confirm the hypothesis generated by our study.

Adult↗

Interneurons involved in the control of multiple motor centers in crayfish.

A number of studies have suggested that abdominal positioning interneurons (APIs) in the crayfish Procambarus clarkii can influence activity in multiple motor centers. Previous work on this population of neurons has demonstrated that they control the activity of tonic abdominal motor neurons (MNs) which generate postural movements of the abdomen and, to some extent, the activity of swimmeret MNs. This investigation demonstrates that many identified APIs also affect the activity of two populations of MNs which open and close the uropods and, in some cases, that of the swimmeret MNs as well. The majority (64%) of APIs examined in this study have an excitatory effect on both populations of uropod MNs. A smaller number (23%) increase the level of activity in one population of uropod MNs, and suppress, or have no effect on, the activity of the other population of uropod MNs. Approximately 25% of the APIs which were examined influence the output of swimmeret MNs, in addition to affecting the activity of uropod MNs. There are also indications that previous estimates of the number of APIs may have been too low. This is based on the observation that many APIs possess what appear to be similar morphologies but generate different patterns of motor output. Taken together, these findings support the idea that APIs influence the output of multiple motor centers which play a role in the control of general body posture and balance in crayfish.

Abdominal Muscles↗

Alkaline protease inhibitor: a novel class of antifungal proteins against phytopathogenic fungi.

A Streptomyces sp., which produces an alkaline protease inhibitor (API) exhibiting antifungal activity has been isolated from soil. The protein has been purified to homogeneity. The molecular characterization has revealed that it is a dimer (M(r) 28 kDa) with five disulphide linkages and has a pI of 3.8. API is a competitive type of inhibitor with a K(i) value of 2.5 x 10(-9) M. The inhibitor is stable over a pH range of 6 to 12 and a temperature range of 40 to 95 degrees C. API exhibits antifungal activity (in vitro) against phytopathogenic fungi such as Fusarium, Alternaria, and Rhizoctonia and also against Trichoderma, a saprophytic fungus. The antifungal activity of API appears to be associated with its ability to inhibit the fungal serine alkaline protease(s), which is indispensable for its growth. Retardation of the rate of fungal spore germination, as well as hyphal extention, was observed in the presence of API. Both the protease inhibitory and the antifungal activity were abolished on treatment of API with DTT (5 mM), suggestive of a common site for both the activities. This is the first report on API as a potential biocontrol agent against phytopathogenic fungi.

Alternaria↗

Identification of alpha-1-proteinase inhibitor-containing cells in pancreatic islets.

By a regular immunoperoxidase method, alpha-1-proteinase inhibitor (Api) was demonstrated in pancreatic islets in individuals with and without genetic deficiency of Api. Subsequently a double immunoperoxidase method, with two different chromogens (diaminobenzidine-brown and 4-chloro-1-naphthol-blue), was applied on the same tissue section in order to identify cells containing Api and cells secreting polypeptide hormones. Api-positive cells and hormone-secreting cells were found to be mutually exclusive indicating that Api is synthesized by previously unrecognized islet cell. The population of Api cells was significantly higher in persons with genetic deficiency than in other individuals, implying a possible compensatory hyperplasia of those cells triggered by a low level of circulating Api.

Blood Proteins↗

Glycosylation of alpha-1-proteinase inhibitor and haptoglobin in ovarian cancer: evidence for two different mechanisms.

The change in glycosylation of the two acute-phase proteins, alpha-1-proteinase inhibitor (API) and haptoglobin (Hp), in progressive ovarian cancer is different. This has been shown by monosaccharide analysis and lectin-binding studies of proteins purified from serum. In the glycan chains of API, there is decreased branching (more biantennary chains), less branches ending in alpha 2-3 sialic acid, more branches ending in alpha 2-6 sialic acid and more fucose, probably linked alpha 1-6 to the core region. On the other hand, Hp shows increased branching (more triantennary chains), more branches ending in alpha 2-3 sialic acid, less branches ending in alpha 2-6 sialic acid, and more fucose, probably in the alpha 1-3 linkage at the end of the chains. This is surprising because API and Hp are thought to be glycosylated by a common pathway in the liver. We have also shown that the fucose-specific lectin, lotus tetragonolobus, extracts abnormal forms of both Hp and API in ovarian cancer, but the expression of this Hp is related to tumour burden and the expression of this API is related to lack of response to therapy. It is suggested that this difference in the behaviour of API and Hp in ovarian cancer may be associated with the different changes in their glycosylation. Of the many mechanisms that could explain these findings, a likely one is that a pathological process is removing API with triantennary chains from the circulation.(ABSTRACT TRUNCATED AT 250 WORDS)

Carbohydrate Conformation↗

Comparison of identification systems for Staphylococcus epidermidis and other coagulase-negative Staphylococcus species.

Three commercially available systems (API Staph-Trac, API 20GP, and Vitek GPI), used to identify coagulase-negative staphylococci, were evaluated against 277 bloodstream isolates, including 94 isolates of Staphylococcus epidermidis and 183 isolates of other coagulase-negative Staphylococcus species. The conventional method of Kloos and Schleifer served as the reference method. Controls included 14 ATCC type culture strains of coagulase-negative staphylococci. The API Staph-Trac system showed the highest rate of agreement with reference method, correctly identifying 73% of the isolates. The Vitek GPI System had an overall rate of agreement of 67% and the API 20GP system correctly identified 61%. The API Staph-Trac system correctly identified 94% of the isolates of S. epidermidis compared with 64% by both Vitek GPI and API 20GP. The most common error for both Vitek GPI and API 20GP systems was the failure to identify organisms contained within the database of the systems. Because none of the tested commercial identification systems identified "non-epidermidis" coagulase-negative Staphylococcus species with a high degree of accuracy, the systems need to be markedly improved or new systems developed.

Bacteremia↗

A small molecule compound inhibits AKT pathway in ovarian cancer cell lines.

BACKGROUND AND OBJECTIVE: Overactivation of AKT1 and gene amplification of AKT2 are frequently detected in ovarian cancer. Activated AKT kinases provide a cell survival signal that may confer resistance to apoptosis induced by conventional therapies in cancer cells. Therefore, development of potent inhibitors that block AKT pathway is an attractive therapeutic strategy for treating ovarian carcinoma. METHODS: Ovarian cancer cell lines, A2780, MDAH2774, OVCAR-8, Caov-3, and normal murine fibroblasts (NIH3T3) were used. Cells were treated with different doses of a non-peptide small molecule compound, 9-methoxy-2-methylellipticinium acetate (termed API-59-OME) that potentially inhibit AKT pathway. Kinase assays and the phosphorylation of AKT, GSK-3alpha/beta, PDK1, ERK1/2, SGK, p38, FAK, EGFR, JAK2, PKC isoforms, and the cleavage of poly (ADP-ribose) polymerase (PARP) were examined in treated and untreated cell lines. Further, cells treated with API-59-OME were analyzed for induction of apoptosis using sub-G1 profile with propidium iodide staining. RESULTS: API-59-OME inhibited AKT kinase activity but did not inhibit ERK or JNK kinase activities in A2780, MDAH2774, and OVCAR-8 cell lines. API-59-OME did not reduce phosphorylation of other protein kinases in these cell lines. API-59-OME induced apoptosis and the cleavage of PARP in A2780, MDAH2774, and OVCAR-8 ovarian cancer cell lines that express elevated levels of phosphorylated AKT. In contrast, in Caov-3 and NIH3T3 cell lines, which lack constitutive AKT activity, API-59-OME only had minimal effect to induce apoptosis. CONCLUSION: These data suggest that API-59-OME may be a potent agent to target constitutively activated AKT pathway in ovarian cancer cells.

Animals↗

Human immunodeficiency virus risk behavior among white and Asian/Pacific Islander high school students in the United States: does culture make a difference?

PURPOSE: This article analyzes sexual behavior among white and Asian/Pacific Islander (API) adolescents, to determine the risk for human immunodeficiency virus (HIV) transmission from a multicultural point of view. METHODS: A total of 5,385 white and 408 API high school students were included. The national school-based Youth Risk Behavior Survey (YRBS 1991) was used. RESULTS: After controlling for academic performance, white students were 2.3 times more likely to communicate about acquired immunodeficiency syndrome (AIDS)/HIV, 2.7 times more likely to be sexually experienced, and 2.5 times more likely to use alcohol or other drugs before sex than APIs. There were no significant differences between these two groups in the age of initiating sex, the number of lifetime partners, the proportion of being currently sexually active (having had sex during the past 3 months), and condom use behavior. Although APIs had a low rate of AIDS/HIV, they have behaviors at as high a risk as white students once they became sexually experienced, and they have an even greater number of recent partners if they are currently sexually active. Use of alcohol or other drugs before sex and condom use is significantly related. CONCLUSIONS: Given the importance of attention to risks among API adolescents, this study underscores the need for more research to explore how culture values play a role among all API students, those who are sexually experienced, and those who are currently sexually active API students, to develop culturally sensitive AIDS/HIV prevention programs.

Adolescent↗

Screening analysis of human pharmaceutical compounds in U.S. surface waters.

The PhATE (Pharmaceutical Assessment and Transport Evaluation) model presented in this paper was developed as a tool to estimate concentrations of active pharmaceutical ingredients (APIs) in U.S. surface waters that result from patient use (or consumption) of medicines. PhATE uses a mass balance approach to model predicted environmental concentrations (PECs) in 11 watersheds selected to be representative of most hydrologic regions of the United States. The model divides rivers into discrete segments. It estimates the mass of API that enters a segment from upstream or from publicly owned treatment works (POTW) and is subsequently lost from the segment via in-stream loss mechanisms or flow diversions (i.e., man-made withdrawals). POTW discharge loads are estimated based on the population served, the API use per capita, the potential loss of the compound associated with human use (e.g., metabolism), and the portion of the API mass removed in the POTW. Simulations using three surrogate compounds showthat PECs generated by PhATE are generally within an order of magnitude of measured concentrations and that the cumulative probability distribution of PECs for all watersheds included in PhATE is consistent with the nationwide distribution of measured concentrations of the surrogate compounds. Model simulations for 11 APIs yielded four categories of results. (1) PECs fit measured data for two compounds. (2) PECs are below analytical method detection limits and thus are consistent with measured data for three compounds. (3) PECs are higher than (i.e., not consistent with) measured data for three compounds. However, this may be the consequence of as yet unidentified depletion mechanisms. (4) PECs are several orders of magnitude below some measured data but consistentwith most measured data forthree compounds. For the fourth category, closer examination of sampling locations suggests that the field-measured concentrations for these compounds do not accurately reflect human use. Overall, these results demonstrate that PhATE may be used to predict screening-level concentrations of APIs and related compounds in the environment as well as to evaluate the suitability of existing fate information for an API.

Forecasting↗

The prepropeptide of vacuolar aminopeptidase I is necessary and sufficient to target the fluorescent reporter protein GFP to the vacuole of yeast by the Ccvt pathway.

We have studied the capacity of the prepro amino extension of vacuolar protease leucine aminopeptidase I (API) to target the fluorescent reporter protein GFP to the vacuole of yeast. The preproGFP chimera constructed by extending the amino end of GFP with the prepro-part of API is rapidly degraded in both wild-type WCG cells and WCG 11/21a cells deficient in the proteasome. In contrast, the chimera expressed in WCG-PP cells deficient in both proteasome activity and vacuolar proteinase A accumulates in the vacuole, where it remains stable. Replacement of Gly by Ile-7, a substitution that prevents folding of the pre-part into an amphipathic helix and inhibits the targeting of the API precursor to the vacuole, inhibits the targeting of preproGFP to the vacuole. The separated pre- and pro-parts of the API precursor do not target GFP to the vacuole. Targeting of preproGFP to the vacuole is independent of its levels of expression, as the fluorescent protein localizes to the vacuole in cells expressing the protein under the control of both the GAL 1/10 or the API promoter. The preproGFP expressed under both promoters is recovered as monomers from cytosolic cell extracts. PreproGFP expressed under the API promoter is packed into cytoplasmic bodies that penetrate into the vacuolar lumen to release the protein. Altogether our results show that the prepro-part of the API precursor is necessary and sufficient to target the green fluorescent reporter protein to the vacuole.

Amino Acid Substitution↗

Adult porcine islets produce MCP-1 and recruit human monocytes in vitro.

Type 1 diabetes can be cured by transplantation of isolated pancreatic islets. Because of the shortage of human donor tissue, adult porcine islets (APIs) constitute a possible alternative tissue source. Upon intraportal injection, islets are subjected to an instant blood-mediated inflammatory reaction (IBMIR) leading to blood clotting, leukocyte islet-infiltration, islet damage and insulin release. Xenogeneic islets surviving IBMIR are rejected in a cellular process involving CD4(+) T lymphocytes and macrophages. We have investigated whether APIs themselves produce and secrete chemokines and/or inflammatory cytokines that may contribute to IBMIR and/or cell-mediated rejection. APIs, cultured for 1, 4, 8 and 11 days post-isolation, expressed mRNA for monocyte chemoattractant protein-1 (MCP-1), IL-1beta and TNF-alpha. API culture supernatants induced migration of human monocytes, which was significantly blocked by an anti-human MCP-1 antibody (Ab). Immunohistochemistry revealed MCP-1 in the cytoplasm of alpha- and beta-cells in isolated islets and in islets in situ. However, APIs or their supernatants were not able to activate human aortic endothelial cells (HAECs) in vitro, and neither IL-1beta nor TNF-alpha were detected by enzyme-linked immunosorbent assay (ELISA) in API culture supernatants. Both recombinant porcine IL-1beta and TNF-alpha were able to activate human endothelial cells (ECs) inducing CD62E and CD106 expression as analyzed by flow cytometry. In conclusion, MCP-1 secreted by APIs may contribute to both IBMIR and rejection by attracting monocytes into the islet; monocytes which upon transformation into macrophages will potentiate antigen presentation and execute islet rejection.

Animals↗

Yol082p, a novel CVT protein involved in the selective targeting of aminopeptidase I to the yeast vacuole.

The yeast vacuolar enzyme aminopeptidase I (API) is synthesized in the cytoplasm as a precursor (pAPI). Upon its assembly into dodecamers, pAPI is wrapped by double-membrane saccular structures for its further transport within vesicles that fuse with the vacuolar membrane and release their content in the vacuolar lumen. Targeting of API to the vacuole occurs by two alternative transport routes, the cvt and the autophagy pathways, which although mechanistically similar specifically operate under vegetative growth or nitrogen starvation conditions, respectively. We have studied the role of Yol082p, a protein identified by its ability to interact with API, in the transport of its precursor to the vacuole. We show that Yol082p interacts with mature API, an interaction that is strengthened by the amino extension of the API protein. Yol082p is required for targeting of pAPI to the vacuole, both under growing and short term nitrogen starvation conditions. Absence of Yol082p does not impede the assembly of pAPI into dodecamers, but precludes the enclosure of pAPI within transport vesicles. Microscopy studies show that during vegetative growth Yol082p is distributed between a cytoplasmic pool and a variable number of 0.13--0.27-microm round, mobile structures, which are no longer observed under conditions of nitrogen starvation, and become larger in cells expressing the inactive Yol082 Delta C32p, or lacking Apg12p. In contrast to the autophagy mutants involved in API transport, a Delta yol082 strain does not lose viability under nitrogen starvation conditions, indicating normal function of the autophagy pathway. The data are consistent with a role of Yol082p in an early step of the API transport, after its assembly into dodecamers. Because Yol082p fulfills the functional requisites that define the CVT proteins, we propose to name it Cvt19.

Aminopeptidases↗

In vitro reconstitution of cytoplasm to vacuole protein targeting in yeast.

Although the majority of known vacuolar proteins transit through the secretory pathway, two vacuole-resident proteins have been identified that reach this organelle by an alternate pathway. These polypeptides are targeted to the vacuole directly from the cytoplasm by a novel import mechanism. The best characterized protein that uses this pathway is aminopeptidase I (API). API is synthesized as a cytoplasmic precursor containing an amino-terminal propeptide that is cleaved off when the protein reaches the vacuole. To dissect the biochemistry of this pathway, we have reconstituted the targeting of API in vitro in a permeabilized cell system. Based on several criteria, the in vitro import assay faithfully reconstitutes the in vivo reaction. After incubation under import conditions, API is processed by a vacuolar-resident protease, copurifies with a vacuole-enriched fraction, and becomes inaccessible to the cytoplasm. These observations demonstrate that API has passed from the cytoplasm to the vacuole. The reconstituted import process is dependent on time, temperature, and energy. ATP gamma S inhibits this reaction, indicating that API transport is ATP driven. API import is also inhibited by GTP gamma S, suggesting that this process may be mediated by a GTP-binding protein. In addition, in vitro import requires a functional vacuolar ATPase; import is inhibited both in the presence of the specific V-ATPase inhibitor bafilomycin A1, and in a yeast strain in which one of the genes encoding a V-ATPase subunit has been disrupted.

Adenosine Triphosphatases↗

Cytoplasm to vacuole trafficking of aminopeptidase I requires a t-SNARE-Sec1p complex composed of Tlg2p and Vps45p.

Aminopeptidase I (API) is imported into the yeast vacuole/lysosome by a constitutive non-classical vesicular transport mechanism, the cytoplasm to vacuole targeting (Cvt) pathway. Newly synthesized precursor API is sequestered in double-membrane cytoplasmic Cvt vesicles. The Cvt vesicles fuse with the vacuole, releasing single-membrane Cvt bodies containing proAPI into the vacuolar lumen, and maturation of API occurs when the Cvt body is degraded, releasing mature API. Under starvation conditions, API is transported to the vacuole by macroautophagy, an inducible, non-selective mechanism that shares many similarities with the Cvt pathway. Here we show that Tlg2p, a member of the syntaxin family of t-SNARE proteins, and Vps45p, a Sec1p homologue, are required in the constitutive Cvt pathway, but not in inducible macroautophagy. Fractionation and protease protection experiments indicate that Tlg2p is required prior to or at the step of API segregation into the Cvt vesicle. Thus, the early Vps45-Tlg2p-dependent step of the Cvt pathway appears to be mechanistically distinct from the comparable stage in macroautophagy. Vps45p associates with both the Tlg2p and Pep12p t-SNAREs, but API maturation is not blocked in a pep12(ts) mutant, indicating that Vps45p independently regulates the function of multiple t-SNARES at distinct trafficking steps.

Aminopeptidases↗